blank Quick help
blank Maintenance news

Scheduled maintenance

Regular maintenance outages:
between 05.00 and 05.15 hrs CET (Monday to Sunday).

Other outages
Availability
Register Forum

2022.02.11

More...
blank News flashes

News Flashes

New version of the European Patent Register – SPC proceedings information in the Unitary Patent Register.

2024-07-24

More...
blank Related links

Extract from the Register of European Patents

EP About this file: EP2708602

EP2708602 - Xylanases, nucleic acids encoding them and methods for making and using them [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  03.01.2020
Database last updated on 24.08.2024
FormerThe patent has been granted
Status updated on  25.01.2019
FormerGrant of patent is intended
Status updated on  23.11.2018
FormerExamination is in progress
Status updated on  13.10.2018
FormerGrant of patent is intended
Status updated on  03.06.2018
FormerExamination is in progress
Status updated on  29.05.2017
Most recent event   Tooltip23.07.2021Lapse of the patent in a contracting state
New state(s): MT
published on 25.08.2021  [2021/34]
Applicant(s)For all designated states
BP Corporation North America Inc.
501 Westlake Park Boulevard
Houston, TX 77079 / US
[2018/26]
Former [2018/16]For all designated states
BASF Enzymes LLC
3550 John Hopkins Court
San Diego, CA 92121 / US
Former [2014/12]For all designated states
Verenium Corporation
3550 John Hopkins Court
San Diego CA 92121 / US
Inventor(s)01 / Gray, Kevin
3550 John Hopkins Ct
San Diego, CA California CA 92121 / US
02 / Dirmeier, Reinhard
3550 John Hopkins Ct
San Diego, CA California CA 92121 / US
 [2014/12]
Representative(s)Wakerley, Helen Rachael
Reddie & Grose LLP The White Chapel Building
10 Whitechapel High Street
London E1 8QS / GB
[2019/09]
Former [2014/12]Wakerley, Helen Rachael
Reddie & Grose LLP
16 Theobalds Road
London WC1X 8PL / GB
Application number, filing date13181497.201.08.2008
[2014/12]
Priority number, dateUS20070977348P03.10.2007         Original published format: US 977348 P
[2014/12]
Filing languageEN
Procedural languageEN
PublicationType: A2 Application without search report 
No.:EP2708602
Date:19.03.2014
Language:EN
[2014/12]
Type: A3 Search report 
No.:EP2708602
Date:21.05.2014
Language:EN
[2014/21]
Type: B1 Patent specification 
No.:EP2708602
Date:27.02.2019
Language:EN
[2019/09]
Search report(s)(Supplementary) European search report - dispatched on:EP17.04.2014
ClassificationIPC:C12N15/52, C12N15/09, C12N9/42
[2014/12]
CPC:
C12N9/248 (EP,US); A61P1/00 (EP); A61P3/00 (EP);
C12P19/02 (US); C12P19/14 (US); D21H17/22 (US);
Y02E50/10 (EP,US); Y02T50/678 (EP,US); Y10T428/249921 (EP,US) (-)
Designated contracting statesAT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MT,   NL,   NO,   PL,   PT,   RO,   SE,   SI,   SK,   TR [2014/12]
TitleGerman:Xylanasen, Nukleinsäuren, die diese codieren, und Verfahren zu deren Herstellung und Verwendung[2014/12]
English:Xylanases, nucleic acids encoding them and methods for making and using them[2014/12]
French:Xylanases, acides nucléiques les codant et leurs procédés de fabrication et d'utilisation[2014/12]
Examination procedure19.11.2014Amendment by applicant (claims and/or description)
19.11.2014Examination requested  [2015/01]
15.04.2016Despatch of a communication from the examining division (Time limit: M06)
17.10.2016Reply to a communication from the examining division
18.05.2017Despatch of a communication from the examining division (Time limit: M06)
22.12.2017Despatch of communication that the application is deemed to be withdrawn, reason: reply to the communication from the examining division not received in time
20.02.2018Reply to a communication from the examining division
04.06.2018Communication of intention to grant the patent
10.10.2018Disapproval of the communication of intention to grant the patent by the applicant or resumption of examination proceedings by the EPO
10.10.2018Fee for grant paid
10.10.2018Fee for publishing/printing paid
03.12.2018Communication of intention to grant the patent
15.01.2019Receipt of the translation of the claim(s)
Parent application(s)   TooltipEP08797071.1  / EP2205744
Divisional application(s)EP19159703.8   Application deemed to be withdrawn  : 27.02.2019
The date of the Examining Division's first communication in respect of the earliest application for which a communication has been issued (EP20080797071) is  25.08.2011
Opposition(s)28.11.2019No opposition filed within time limit [2020/06]
Request for further processing for:The application is deemed to be withdrawn due to failure to reply to the examination report
20.02.2018Request for further processing filed
20.02.2018Full payment received (date of receipt of payment)
Request granted
06.03.2018Decision despatched
Fees paidRenewal fee
17.09.2013Renewal fee patent year 03
17.09.2013Renewal fee patent year 04
17.09.2013Renewal fee patent year 05
17.09.2013Renewal fee patent year 06
27.08.2014Renewal fee patent year 07
27.08.2015Renewal fee patent year 08
29.08.2016Renewal fee patent year 09
31.08.2017Renewal fee patent year 10
31.08.2018Renewal fee patent year 11
Opt-out from the exclusive  Tooltip
competence of the Unified
Patent Court
See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipHU01.08.2008
AT27.02.2019
CY27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
MT27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
IE01.08.2019
LU01.08.2019
BE31.08.2019
CH31.08.2019
LI31.08.2019
[2021/34]
Former [2021/33]HU01.08.2008
AT27.02.2019
CY27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
IE01.08.2019
LU01.08.2019
BE31.08.2019
CH31.08.2019
LI31.08.2019
Former [2021/26]AT27.02.2019
CY27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
IE01.08.2019
LU01.08.2019
BE31.08.2019
CH31.08.2019
LI31.08.2019
Former [2020/38]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
IE01.08.2019
LU01.08.2019
BE31.08.2019
CH31.08.2019
LI31.08.2019
Former [2020/36]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
IE01.08.2019
LU01.08.2019
CH31.08.2019
LI31.08.2019
Former [2020/25]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
MC27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
LU01.08.2019
CH31.08.2019
LI31.08.2019
Former [2020/17]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
TR27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2020/13]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SI27.02.2019
SK27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2020/03]AT27.02.2019
CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SK27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2020/01]CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
PL27.02.2019
RO27.02.2019
SE27.02.2019
SK27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2019/49]CZ27.02.2019
EE27.02.2019
ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
RO27.02.2019
SE27.02.2019
SK27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2019/47]ES27.02.2019
FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
SE27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2019/46]FI27.02.2019
HR27.02.2019
IT27.02.2019
LT27.02.2019
LV27.02.2019
SE27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2019/39]FI27.02.2019
HR27.02.2019
LT27.02.2019
LV27.02.2019
SE27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
IS27.06.2019
PT27.06.2019
Former [2019/38]FI27.02.2019
LT27.02.2019
SE27.02.2019
BG27.05.2019
NO27.05.2019
GR28.05.2019
PT27.06.2019
Former [2019/37]FI27.02.2019
LT27.02.2019
SE27.02.2019
NO27.05.2019
GR28.05.2019
PT27.06.2019
Former [2019/34]FI27.02.2019
LT27.02.2019
SE27.02.2019
NO27.05.2019
PT27.06.2019
Former [2019/33]FI27.02.2019
LT27.02.2019
NO27.05.2019
PT27.06.2019
Documents cited:Search[X]WO2007095398  (DIVERSA CORP [US], et al) [X] 1-20 * abstract * * page 3 * * page 11 * * page 29 * * page 31 * * page 113 - page 117 * * page 128 * * page 151 - page 155 * * page 234 - page 236 * * examples 1-15 * * claims 1-133 * * figures 16, 17 *;
 [Y]  - ARASE AKEMI ET AL, "Stabilization of xylanase by random mutagenesis", FEBS LETTERS, ELSEVIER, AMSTERDAM, NL LNKD- DOI:10.1016/0014-5793(93)81199-A, (19930101), vol. 316, no. 2, ISSN 0014-5793, pages 123 - 127, XP002196471 [Y] 1-20 * the whole document *

DOI:   http://dx.doi.org/10.1016/0014-5793(93)81199-A
 [Y]  - ANDREWS SIMON R ET AL, "The use of forced protein evolution to investigate and improve stability of family 10 xylanases - The production of Ca2+-independent stable xylanases", JOURNAL OF BIOLOGICAL CHEMISTRY, (20041224), vol. 279, no. 52, ISSN 0021-9258, pages 54369 - 54379, XP002591513 [Y] 1-20 * the whole document *

DOI:   http://dx.doi.org/10.1074/JBC.M409044200
by applicantUS4261868
 US4404128
 US4458066
 US4683195
 US4683202
 US4725544
 US4788066
 US4946778
 US4962028
 US4987071
 US5015580
 US5021246
 WO9116427
 US5068009
 US5087571
 US5103883
 US5108765
 US5110412
 US5116746
 US5143854
 US5179021
 US5202249
 US5204015
 US5217879
 WO9403612
 US5306633
 US5369024
 US5387742
 US5395765
 US5405769
 US5405624
 US5407827
 EP0659215
 US5429828
 US5432074
 US5434049
 US5434071
 WO9522625
 US5457045
 US5486468
 US5498534
 US5503709
 WO9617958
 US5536650
 US5536325
 US5556752
 WO9633207
 US5573933
 US5582681
 WO9639154
 US5589583
 US5591304
 EP0752008
 WO9701629
 WO9703211
 US5602321
 US5605793
 US5608148
 US5612055
 US5618386
 US5633440
 US5632957
 WO9720078
 US5639940
 US5645686
 WO9735966
 US5681730
 WO9746313
 US5700637
 US5705369
 US5709796
 US5712135
 US5721118
 US5720971
 US5725732
 US5744305
 US5750870
 US5759840
 US5760211
 US5762991
 US5770456
 US5770012
 WO9827230
 WO9831837
 US5786316
 US5795737
 US5800992
 US5807522
 US5811238
 WO9841653
 WO9841622
 WO9842832
 WO9842727
 US5824514
 US5830696
 US5830721
 US5830645
 US5830732
 US5834252
 US5834301
 US5837458
 DE19723890
 US5856174
 US5856164
 WO9903497
 US5871730
 WO9909217
 US5880327
 US5892070
 US5891698
 WO9921979
 WO9923107
 WO9929902
 US5922854
 EP0932670
 US5939250
 WO9941402
 WO9941383
 WO9941369
 WO9941368
 US5948667
 US5955358
 US5959171
 US5959098
 US5965408
 US5965452
 WO9951773
 US5981233
 US5980581
 WO0000632
 US6013440
 US6017751
 US6022963
 US6021536
 US6025155
 US6024766
 WO0009679
 US6030779
 US6045996
 US6048695
 US6054270
 US6054267
 US6057103
 US6057438
 US6060299
 US6077316
 US6090595
 US6099844
 US6107541
 US6111166
 WO0049890
 US6118044
 US6132727
 US6132716
 US6153410
 US6156952
 US6171820
 US6177263
 US6187992
 US6197070
 US6204232
 US6211428
 US6241849
 US6245546
 US6254722
 US6258606
 US6261776
 US6261828
 US2001008765
 US6264925
 US2001012537
 US2001014449
 US2001014448
 US6277628
 US6277489
 US2001016322
 US6280926
 US2001018642
 US2001019827
 US6287862
 US6287861
 US6287708
 US6291242
 US6297038
 US6309872
 US6309871
 US6319714
 US6326341
 US6329333
 WO0196551
 US6333301
 US6333181
 US2002001809
 US6344328
 US6361974
 US6365561
 US6368861
 US6368798
 WO0229032
 WO0231203
 US6376246
 US6379964
 US6380147
 US6399561
 US6399123
 WO0244336
 US6409841
 US2002080350
 US6413928
 US6423542
 US6423145
 US6426224
 US6426200
 US6436675
 US2002142438
 US2002144795
 US2002164730
 US6489127
 US6506559
 US6511824
 US6512110
 US6515109
 US6537776
 US2003096394
 US6579258
 US6605449
 US6623953
 US6635449
 US6660506
 US6713282
 US6712866
 US6740506
 US6767728
 US6773900
 US6824646
 US2005069998
 US2005130160
 US2005281916
 US2006008910
 US2006014260
 US2006019286
 US2006019258
 US2006025361
 US2006030003
    - J BACTERIOL., (200208), vol. 184, no. 15, pages 4124 - 4133
    - S. P. COLOWICK AND N. O. KAPLAN., Methods in Enzymology, Immobilized Enzymes and Cells, Part C., ACADEMIC PRESS, (1987), vol. 136
    - ADAMS, J. AM. CHEM. SOC., (1983), vol. 105, page 661
    - BELOUSOV, NUCLEIC ACIDS RES., (1997), vol. 25, pages 3440 - 3444
    - FRENKEL, FREE RADIC. BIOL. MED., (1995), vol. 19, pages 373 - 380
    - BLOMMERS, BIOCHEMISTRY, (1994), vol. 33, pages 7886 - 7896
    - NARANG, METH. ENZYMOL., (1979), vol. 68, page 90
    - BROWN, METH. ENZYMOL., (1979), vol. 68, page 109
    - BEAUCAGE, TETRA. LETT., (1981), vol. 22, page 1859
    - MOLECULAR CLONING: A LABORATORY MANUAL (2ND ED., COLD SPRING HARBOR LABORATORY, (1989), vol. 1-3
    - ROSENFELD, NAT. GENET., (1997), vol. 15, pages 333 - 335
    - WOON, GENOMICS, (1998), vol. 50, pages 306 - 316
    - KERN, BIOTECHNIQUES, (1997), vol. 23, pages 120 - 124
    - WILLIAMS, BIOCHEMISTRY, (1995), vol. 34, pages 1787 - 1797
    - DOBELI, PROTEIN EXPR. PURIF., (1998), vol. 12, pages 404 - 414
    - KROLL, DNA CELL. BIOL., (1993), vol. 12, pages 441 - 53
    - MATA, TOXICOL. APPL. PHARMACOL., (1997), vol. 144, pages 189 - 197
    - STRAUSS-SOUKUP, BIOCHEMISTRY, (1997), vol. 36, pages 8692 - 8698
    - SAMSTAG, ANTISENSE NUCLEIC ACID DRUG DEV, (1996), vol. 6, pages 153 - 156
    - HUANG, PLANT MOL. BIOL., (1996), vol. 33, pages 125 - 139
    - ZHONG, MOL. GEN. GENET., (1996), vol. 251, pages 196 - 203
    - SOLOCOMBE, PLANT PHYSIOL., (1994), vol. 104, pages 1167 - 1176
    - MARTINEZ, J MOL. BIOL, (1989), vol. 208, pages 551 - 565
    - MANJUNATH, PLANT MOL. BIOL., (1997), vol. 33, pages 97 - 112
    - KUMAGAI, PROC. NATL. ACAD. SCI. USA, (1995), vol. 92, pages 1679 - 1683
    - VERDAGUER, PLANT MOL. BIOL., (1996), vol. 31, pages 1129 - 1139
    - KIRCH, PLANT MOL. BIOL., (1997), vol. 33, pages 897 - 909
    - BLAZQUEZ, PLANT CELL, (1998), vol. 10, pages 791 - 800
    - CARDON, PLANT J, (1997), vol. 12, pages 367 - 77
    - MANDEL, PLANT MOLECULAR BIOLOGY, (1995), vol. 29, pages 995 - 1004
    - JOHN, PROC. NATL. ACAD. SCI. USA, (1997), vol. 89, pages 5769 - 5773
    - DELISLE, INT. REV. CYTOL., (1990), vol. 123, pages 39 - 60
    - BUSK, PLANT J., (1997), vol. 11, pages 1285 - 1295
    - GUERRERO, MOL. GEN. GENET., (1990), vol. 224, pages 161 - 168
    - BLUME, PLANT J., (1997), vol. 12, pages 731 - 746
    - FICKER, PLANT MOL. BIOL., (1997), vol. 35, pages 425 - 431
    - REISER, CELL, (1995), vol. 83, pages 735 - 742
    - LIU, PLANT PHYSIOL., (1997), vol. 115, pages 397 - 407
    - CHEN, PLANT J., (1996), vol. 10, pages 955 - 966
    - STREIT, MOL. PLANT MICROBE INTERACT., (1997), vol. 10, pages 933 - 937
    - SHEEN, SCIENCE, (1996), vol. 274, pages 1900 - 1902
    - DE VEYLDER, PLANT CELL PHYSIOL., (1997), vol. 38, pages 568 - 577
    - MASGRAU, PLANT J., (1997), vol. 11, pages 465 - 473
    - STANGE, PLANT J., (1997), vol. 11, pages 1315 - 1324
    - COVEY, PROC. NATL. ACAD. SCI. USA, (1990), vol. 87, pages 1633 - 1637
    - ANGELL, EMBO J., (1997), vol. 16, pages 3675 - 3684
    - CASPER, GENE, (1996), vol. 173, pages 69 - 73
    - HILLMAN, VIROLOGY, (1989), vol. 169, pages 42 - 50
    - DOLJA, VIROLOGY, (1997), vol. 234, pages 243 - 252
    - MORINAGA, MICROBIOL IMMUNOL., (1993), vol. 37, pages 471 - 476
    - CECCHINI, MOL. PLANT MICROBE INTERACT., (1997), vol. 10, pages 1094 - 1101
    - RUBIN, MOL. CELL. BIOL., (1997), vol. 17, pages 6294 - 6302
    - KUNZE, CURR. TOP. MICROBIOL. IMMUNOL., (1996), vol. 204, pages 161 - 194
    - SCHLAPPI, PLANT MOL. BIOL., (1996), vol. 32, pages 717 - 725
    - WEISING, ANN. REV. GENET, (1988), vol. 22, pages 421 - 477
    - GURTU, BIOCHEM. BIOPHYS. RES. COMMUN., (1996), vol. 229, pages 295 - 8
    - SANDERS, DEV. BIOL. STAND., (1987), vol. 66, pages 55 - 63
    - LAPIDOT, A.; MECHALY, A.; SHOHAM, Y., "Overexpression and single-step purification of a thermostable xylanase from Bacillus stearothermophilus T-6", J. BIOTECHNOL., (199611), vol. 51, doi:doi:10.1016/S0168-1656(96)01604-5, pages 259 - 64, XP004071570

DOI:   http://dx.doi.org/10.1016/S0168-1656(96)01604-5
    - LUTHI, E.; JASMAT, N.B.; BERGQUIST, P.L., "Xylanase from the extremely thermophilic bacterium Caldocellum saccharolyticum: overexpression of the gene in Escherichia coli and characterization of the gene product", APPL. ENVIRON. MICROBIOL., (1990), vol. 56, pages 2677 - 83
    - SUNG, W.L.; LUK, C.K.; ZAHAB, D.M.; WAKARCHUK, W., "Overexpression of the Bacillus subtilis and circulans xylanases in Escherichia coli", PROTEIN EXPR. PURIF., (1993), vol. 4, doi:doi:10.1006/prep.1993.1026, pages 200 - 6, XP024799993

DOI:   http://dx.doi.org/10.1006/prep.1993.1026
    - GLUZMAN, CELL, (1981), vol. 23, page 175
    - WU, GENOMICS, (1989), vol. 4, page 560
    - LANDEGREN, SCIENCE, (1988), vol. 241, page 1077
    - BARRINGER, GENE, (1990), vol. 89, page 117
    - KWOH, PROC. NATL. ACAD. SCI. USA, (1989), vol. 86, page 1173
    - GUATELLI, PROC. NATL. ACAD. SCI. USA, (1990), vol. 87, page 1874
    - SMITH, J. CLIN. MICROBIOL., (1997), vol. 35, pages 1477 - 1491
    - BURG, MOL. CELL. PROBES, (1996), vol. 10, pages 257 - 271
    - BERGER, METHODS ENZYMOL., (1987), vol. 152, pages 307 - 316
    - SOOKNANAN, BIOTECHNOLOGY, (1995), vol. 13, pages 563 - 564
    - STRYER, LUBERT., Biochemistry, W. H FREEMAN & CO.
    - PEARSON; LIPMAN, PROC. NATL. ACAD. SCI. USA, (1988), vol. 85, no. 8, pages 2444 - 2448
    - ALTSCHUL ET AL., J. MOL. BIOL., (1990), vol. 215, no. 3, pages 403 - 410
    - THOMPSON, NUCLEIC ACIDS RES., (1994), vol. 22, no. 2, pages 4673 - 4680
    - HIGGINS ET AL., METHODS ENZYMOL., (1996), vol. 266, pages 383 - 402
    - ALTSCHUL, NATURE GENETICS, (1993), vol. 3, pages 266 - 272
    - SMITH; WATERMAN, ADV. APPL. MATH., (1981), vol. 2, page 482
    - NEEDLEMAN; WUNSCH, J. MOL. BIOL, (1970), vol. 48, page 443
    - PERSON; LIPMAN, PROC. NAT'L. ACAD. SCI. USA, (1988), vol. 85, page 2444
    - ALTSCHUL, NUC. ACIDS RES., (1977), vol. 25, pages 3389 - 3402
    - ALTSCHUL ET AL., J. MOL. BIOL., (1990), vol. 215, pages 403 - 410
    - HENIKOFF; HENIKOFF, PROC. NATL. ACAD. SCI. USA, (1989), vol. 89, page 10915
    - KARLIN; ALTSCHUL, PROC. NATL. ACAD. SCI. USA, (1993), vol. 90, page 5873
    - GONNET ET AL., SCIENCE, (1992), vol. 256, pages 1443 - 1445
    - HENIKOFF; HENIKOFF, PROTEINS, (1993), vol. 17, pages 49 - 61
    - LUBERT., BIOCHEMISTRY
    - ALTSCHUL ET AL., J. MOL. BIOL., (1990), vol. 215, page 403
    - PEARSON; LIPMAN, PROC. NATL. ACAD. SCI. USA, (1988), vol. 85, page 2444
    - BRUTLAG ET AL., COMP. APP. BIOSCI., (1990), vol. 6, pages 237 - 245
    - BARANY, F., "The Ligase Chain Reaction in a PCR World", PCR METHODS AND APPLICATIONS, (1991), vol. 1, pages 5 - 16, XP009024434
    - E. FAHY ET AL., "Self-sustained Sequence Replication (3SR): An Isothermal Transcription-based Amplification System Alternative to PCR", PCR METHODS AND APPLICATIONS, (1991), vol. 1, pages 25 - 33
    - WALKER G.T. ET AL., "Strand Displacement Amplification-an Isothermal in vitro DNA Amplification Technique", NUCLEIC ACID RESEARCH, (1992), vol. 20, pages 1691 - 1696
    - HO, METHODS ENZYMOL., (2000), vol. 314, pages 168 - 183
    - SMITH, EUR. J. PHARM. SCI., (2000), vol. 11, pages 191 - 198
    - MATA, TOXICOL APPL PHARMACOL, (1997), vol. 144, pages 189 - 197
    - GOLD, J. OFBIOL. CHEM., (1995), vol. 270, pages 13581 - 13584
    - ROSSI, AIDS RESEARCH AND HUMAN RETROVIRUSES, (1992), vol. 8, page 183
    - HAMPEL, BIOCHEMISTRY, (1989), vol. 28, page 4929
    - HAMPEL, NUC. ACIDS RES., (1990), vol. 18, page 299
    - PERROTTA, BIOCHEMISTRY, (1992), vol. 31, page 16
    - GUERRIER-TAKADA, CELL, (1983), vol. 35, page 849
    - SHUEY, DRUG DISCOV. TODAY, (2002), vol. 7, pages 1040 - 1046
    - RICE, PROC. NATL. ACAD. SCI. USA, (1992), vol. 89, pages 5467 - 5471
    - CRAMERI, BIOTECHNIQUES, (1995), vol. 18, pages 194 - 196
    - STEMMER, "Molecular breeding of viruses for targeting and other clinical properties", TUMOR TARGETING, (1999), vol. 4, pages 1 - 4
    - NESS, NATURE BIOTECHNOLOGY, (1999), vol. 17, pages 893 - 896
    - CHANG, "Evolution of a cytokine using DNA family shuffling", NATURE BIOTECHNOLOGY, (1999), vol. 17, doi:doi:10.1038/70147, pages 793 - 797, XP002165178

DOI:   http://dx.doi.org/10.1038/70147
    - MINSHULL, "Protein evolution by molecular breeding", CURRENT OPINION IN CHEMICAL BIOLOGY, (1999), vol. 3, pages 284 - 290
    - CHRISTIANS, "Directed evolution of thymidine kinase for AZT phosphorylation using DNA family shuffling", NATURE BIOTECHNOLOGY, (1999), vol. 17, doi:doi:10.1038/7003, pages 259 - 264, XP002154178

DOI:   http://dx.doi.org/10.1038/7003
    - CRAMERI, "DNA shuffling of a family of genes from diverse species accelerates directed evolution", NATURE, (1998), vol. 391, doi:doi:10.1038/34663, pages 288 - 291, XP055092965

DOI:   http://dx.doi.org/10.1038/34663
    - CRAMERI, "Molecular evolution of an arsenate detoxification pathway by DNA shuffling", NATURE BIOTECHNOLOGY, (1997), vol. 15, doi:doi:10.1038/nbt0597-436, pages 436 - 438, XP002912510

DOI:   http://dx.doi.org/10.1038/nbt0597-436
    - ZHANG, "Directed evolution of an effective fucosidase from a galactosidase by DNA shuffling and screening", PROC. NATL. ACAD. SCI. USA, (1997), vol. 94, doi:doi:10.1073/pnas.94.9.4504, pages 4504 - 4509, XP002087464

DOI:   http://dx.doi.org/10.1073/pnas.94.9.4504
    - PATTEN ET AL., "Applications of DNA Shuffling to Pharmaceuticals and Vaccines", CURRENT OPINION IN BIOTECHNOLOGY, (1997), vol. 8, doi:doi:10.1016/S0958-1669(97)80127-9, pages 724 - 733, XP002920749

DOI:   http://dx.doi.org/10.1016/S0958-1669(97)80127-9
    - CRAMERI ET AL., "Construction and evolution of antibody- phage libraries by DNA shuffling", NATURE MEDICINE, (1996), vol. 2, pages 100 - 103
    - GATES ET AL., "Affinity selective isolation of ligands from peptide libraries through display on a lac repressor 'headpiece dimer", JOURNAL OF MOLECULAR BIOLOGY, (1996), vol. 255, doi:doi:10.1006/jmbi.1996.0031, pages 373 - 386, XP002941960

DOI:   http://dx.doi.org/10.1006/jmbi.1996.0031
    - "Sexual PCR and Assembly PCR", STEMMER, The Encyclopedia of Molecular Biology, VCH PUBLISHERS, (1996), pages 447 - 457
    - CRAMERI; STEMMER, "Combinatorial multiple cassette mutagenesis creates all the permutations of mutant and wildtype cassettes", BIOTECHNIQUES, (1995), vol. 18, pages 194 - 195
    - STEMMER ET AL., "Single-step assembly of a gene and entire plasmid form large numbers of oligodeoxyribonucleotides", GENE, (1995), vol. 164, pages 49 - 53
    - STEMMER, "The Evolution of Molecular Computation", SCIENCE, (1995), vol. 270, doi:doi:10.1126/science.270.5241.1510, page 1510, XP001032709

DOI:   http://dx.doi.org/10.1126/science.270.5241.1510
    - STEMMER, "Searching Sequence Space", BIO/TECHNOLOGY, (1995), vol. 13, doi:doi:10.1038/nbt0695-549, pages 549 - 553, XP002095510

DOI:   http://dx.doi.org/10.1038/nbt0695-549
    - STEMMER, "Rapid evolution of a protein in vitro by DNA shuffling", NATURE, (1994), vol. 370, doi:doi:10.1038/370389a0, pages 389 - 391, XP002082182

DOI:   http://dx.doi.org/10.1038/370389a0
    - STEMMER, "DNA shuffling by random fragmentation and reassembly: In vitro recombination for molecular evolution.", PROC. NATL. ACAD. SCI. USA, (1994), vol. 91, doi:doi:10.1073/pnas.91.22.10747, pages 10747 - 10751, XP002912215

DOI:   http://dx.doi.org/10.1073/pnas.91.22.10747
    - LING ET AL., "Approaches to DNA mutagenesis: an overview", ANAL BIOCHEM., (1997), vol. 254, no. 2, doi:doi:10.1006/abio.1997.2428, pages 157 - 178, XP002948670

DOI:   http://dx.doi.org/10.1006/abio.1997.2428
    - DALE ET AL., "Oligonucleotide-directed random mutagenesis using the phosphorothioate method", METHODS MOL. BIOL., (1996), vol. 57, pages 369 - 374
    - SMITH, "In vitro mutagenesis", ANN. REV. GENET., (1985), vol. 19, doi:doi:10.1146/annurev.ge.19.120185.002231, pages 423 - 462, XP002495232

DOI:   http://dx.doi.org/10.1146/annurev.ge.19.120185.002231
    - BOTSTEIN; SHORTLE, "Strategies and applications of in vitro mutagenesis", SCIENCE, (1985), vol. 229, pages 1193 - 1201, XP001314554
    - CARTER, "Site-directed mutagenesis", BIOCHEM. J., (1986), vol. 237, pages 1 - 7
    - KUNKEL, "Rapid and efficient site-specific mutagenesis without phenotypic selection", PROC. NATL. ACAD. SCI. USA, (1985), vol. 82, doi:doi:10.1073/pnas.82.2.488, pages 488 - 492, XP002052322

DOI:   http://dx.doi.org/10.1073/pnas.82.2.488
    - KUNKEL ET AL., "Rapid and efficient site-specific mutagenesis without phenotypic selection", METHODS IN ENZYMOL., (1987), vol. 154, doi:doi:10.1016/0076-6879(87)54085-X, pages 367 - 382, XP001098930

DOI:   http://dx.doi.org/10.1016/0076-6879(87)54085-X
    - BASS ET AL., "Mutant Trp repressors with new DNA-binding specificities", SCIENCE, (1988), vol. 242, doi:doi:10.1126/science.3140377, pages 240 - 245, XP000700229

DOI:   http://dx.doi.org/10.1126/science.3140377
    - METHODS IN ENZYMOL., (1983), vol. 100, pages 468 - 500
    - METHODS IN ENZYMOL., (1987), vol. 154, pages 329 - 350
    - ZOLLER, "Oligonucleotide-directed mutagenesis using M13-derived vectors: an efficient and general procedure for the production of point mutations in any DNA fragment", NUCLEIC ACIDS RES., (1982), vol. 10, pages 6487 - 6500
    - ZOLLER; SMITH, "Oligonucleotide-directed mutagenesis of DNA fragments cloned into M13 vectors", METHODS IN ENZYMOL., (1983), vol. 100, doi:doi:10.1016/0076-6879(83)00074-9, pages 468 - 500, XP001088749

DOI:   http://dx.doi.org/10.1016/0076-6879(83)00074-9
    - ZOLLER, "Oligonucleotide- directed mutagenesis: a simple method using two oligonucleotide primers and a single- stranded DNA template", METHODS IN ENZYMOL., (1987), vol. 154, doi:doi:10.1016/0076-6879(87)54083-6, pages 329 - 350, XP000615890

DOI:   http://dx.doi.org/10.1016/0076-6879(87)54083-6
    - TAYLOR, "The use of phosphorothioate-modified DNA in restriction enzyme reactions to prepare nicked DNA", NUCL. ACIDS RES., (1985), vol. 13, pages 8749 - 8764, XP000654371
    - TAYLOR, "The rapid generation of oligonucleotide-directed mutations at high frequency using phosphorothioate-modified DNA", NUCL. ACIDS RES., (1985), vol. 13, pages 8765 - 8787
    - NAKAMAYE, "Inhibition of restriction endonuclease Nci I cleavage by phosphorothioate groups and its application to oligonucleotide-directed mutagenesis", NUCL. ACIDS RES., (1986), vol. 14, pages 9679 - 9698
    - SAYERS, "Y-T Exonucleases in phosphorothioate-based oligonucleotide-directed mutagenesis", NUCL. ACIDS RES., (1988), vol. 16, pages 791 - 802, XP001314878
    - SAYERS ET AL., "Strand specific cleavage of phosphorothioate-containing DNA by reaction with restriction endonucleases in the presence of ethidium bromide", NUCL. ACIDS RES., (1988), vol. 16, pages 803 - 814
    - KRAMER ET AL., "The gapped duplex DNA approach to oligonucleotide-directed mutation construction", NUCL. ACIDS RES., (1984), vol. 12, pages 9441 - 9456, XP002026371
    - KRAMER; FRITZ, "Oligonucleotide-directed construction of mutations via gapped duplex DNA", METHODS IN ENZYMOL., (1987), vol. 154, pages 350 - 367
    - KRAMER, "Improved enzymatic in vitro reactions in the gapped duplex DNA approach to oligonucleotide-directed construction of mutations", NUCL. ACIDS RES., (1988), vol. 16, page 7207
    - FRITZ, "Oligonucleotide-directed construction of mutations: a gapped duplex DNA procedure without enzymatic reactions in vitro", NUCL. ACIDS RES., (1988), vol. 16, pages 6987 - 6999
    - KRAMER, "Point Mismatch Repair", CELL, (1984), vol. 38, pages 879 - 887
    - CARTER ET AL., "Improved oligonucleotide site- directed mutagenesis using M13 vectors", NUCL. ACIDS RES., (1985), vol. 13, pages 4431 - 4443
    - CARTER, "Improved oligonucleotide-directed mutagenesis using M13 vectors", METHODS IN ENZYMOL., (1987), vol. 154, pages 382 - 403
    - EGHTEDARZADEH, "Use of oligonucleotides to generate large deletions", NUCL. ACIDS RES., (1986), vol. 14, page 5115
    - WELLS ET AL., "Importance of hydrogen-bond formation in stabilizing the transition state of subtilisin", PHIL. TRANS. R. SOC. LOND. A, (1986), vol. 317, pages 415 - 423
    - NAMBIAR ET AL., "Total synthesis and cloning of a gene coding for the ribonuclease S protein", SCIENCE, (1984), vol. 223, pages 1299 - 1301
    - SAKAMAR; KHORANA, "Total synthesis and expression of a gene for the a-subunit of bovine rod outer segment guanine nucleotide-binding protein (transducin", NUCL. ACIDS RES., (1988), vol. 14, pages 6361 - 6372
    - WELLS ET AL., "Cassette mutagenesis: an efficient method for generation of multiple mutations at defined sites", GENE, (1985), vol. 34, doi:doi:10.1016/0378-1119(85)90140-4, pages 315 - 323, XP023539300

DOI:   http://dx.doi.org/10.1016/0378-1119(85)90140-4
    - GRUNDSTROM ET AL., "Oligonucleotide-directed mutagenesis by microscale shot- gun' gene synthesis", NUCL. ACIDS RES., (1985), vol. 13, pages 3305 - 3316
    - ARNOLD, "Protein engineering for unusual environments", CURRENT OPINION IN BIOTECHNOLOGY, (1993), vol. 4, doi:doi:10.1016/0958-1669(93)90011-K, pages 450 - 455, XP023601352

DOI:   http://dx.doi.org/10.1016/0958-1669(93)90011-K
    - "Oligonucleotide-directed double-strand break repair in plasmids of Escherichia coli: a method for site-specific mutagenesis", PROC. NATL. ACAD. SCI. USA, vol. 83, pages 7177 - 7181
    - METHODS IN ENZYMOLOGY, vol. 154
    - LEUNG, D.W. ET AL., TECHNIQUE, (1989), vol. 1, pages 11 - 15
    - CALDWELL, R. C.; JOYCE G.F., PCR METHODS APPLIC., (1992), vol. 2, pages 28 - 33
    - REIDHAAR-OLSON, SCIENCE, (1988), vol. 241, pages 53 - 57
    - STEMMER, PROC. NATL. ACAD. SCI. USA, (1994), vol. 91, pages 10747 - 10751
    - ARKIN, A.P.; YOUVAN, D.C., PNAS, USA, (1992), vol. 89, pages 7811 - 7815
    - DELEGRAVE, S.; YOUVAN, D.C., BIOTECHNOLOGY RESEARCH, (1993), vol. 11, pages 1548 - 1552
    - ARNOLD, F.H., CURRENT OPINION IN BIOTECHNOLOGY, (1993), vol. 4, pages 450 - 455
    - BACA, INT. J. PARASITOL., (2000), vol. 30, pages 113 - 118
    - HALE, PROTEIN EXPR. PURIF., (1998), vol. 12, pages 185 - 188
    - NARUM, INFECT. IMMUN., (2001), vol. 69, pages 7250 - 7253
    - OUTCHKOUROV, PROTEIN EXPR. PURIF., (2002), vol. 24, pages 18 - 24
    - FENG, BIOCHEMISTRY, (2000), vol. 39, pages 15399 - 15409
    - HUMPHREYS, PROTEIN EXPR. PURIF., (2000), vol. 20, pages 252 - 264
    - POLLOCK, J. IMMUNOL. METHODS, (1999), vol. 231, pages 147 - 157
    - BAGUISI, NAT. BIOTECHNOL., (1999), vol. 17, pages 456 - 461
    - STREPP, PROC NATL. ACAD. SCI. USA, (1998), vol. 95, pages 4368 - 4373
    - MIAO, PLANT J, (1995), vol. 7, pages 359 - 365
    - CHRISTOU, PLANT MOL. BIOL., (1997), vol. 35, pages 197 - 203
    - PAWLOWSKI, MOL. BIOTECHNOL., (1996), vol. 6, pages 17 - 30
    - KLEIN, NATURE, (1987), vol. 327, pages 70 - 73
    - TAKUMI, GENES GENET. SYST., (1997), vol. 72, pages 63 - 69
    - ROUWENDAL, PLANT MOL. BIOL., (1997), vol. 33, pages 989 - 999
    - PORTA, "Use of viral replicons for the expression of genes in plants", MOL. BIOTECHNOL, (1996), vol. 5, doi:doi:10.1007/BF02900359, pages 209 - 221, XP001096010

DOI:   http://dx.doi.org/10.1007/BF02900359
    - HORSCH, SCIENCE, (1984), vol. 233, pages 496 - 498
    - FRALEY, PROC. NATL. ACAD SCI. USA, (1983), vol. 80, page 4803
    - HIEI, PLANT MOL. BIOL., (1997), vol. 35, pages 205 - 218
    - HORSCH, SCIENCE, (1984), vol. 233, page 496
    - FRALEY, PROC. NATL. ACAD. SCI USA, (1983), vol. 80, page 4803
    - PARK, PLANT MOL. BIOL., (1996), vol. 32, pages 1135 - 1148
    - "Protoplasts Isolation and Culture", EVANS ET AL., Handbook of Plant Cell Culture, MACMILLILAN PUBLISHING COMPANY, (1983), pages 124 - 176
    - BINDING, Regeneration of Plants, Plant Protoplasts, CRC PRESS, (1985), pages 21 - 73
    - KLEE, ANN. REV. OF PLANT PHYS., (1987), vol. 38, pages 467 - 486
    - PALMGREN, TRENDS GENET., (1997), vol. 13, page 348
    - CHONG, TRANSGENIC RES., (1997), vol. 6, pages 289 - 296
    - J. BACTERIOL., (200208), vol. 184, no. 15, pages 4124 - 4133
    - CZJZEK, J. BIOL. CHEM., (2001), vol. 276, no. 51, pages 48580 - 7
    - BORASTON, BIOCHEM. J., (2004), vol. 382, pages 769 - 781
    - DOWNIE, "A new assay for quantifying endo-beta-mannanase activity using Congo red dye", PHYTOCHEMISTRY, (199407), vol. 36, no. 4, doi:doi:10.1016/S0031-9422(00)90446-1, pages 829 - 835, XP026631543

DOI:   http://dx.doi.org/10.1016/S0031-9422(00)90446-1
    - BREUIL, "Comparison of the 3, 5-dinitrosalicylic acid and Nelson- Somogyi methods of assaying for reducing sugars and determining cellulase activity", ENZYME MICROB. TECHNOL., (1985), vol. 7, doi:doi:10.1016/0141-0229(85)90111-5, pages 327 - 332, XP023679173

DOI:   http://dx.doi.org/10.1016/0141-0229(85)90111-5
    - SOMOGYI, M., "Notes on sugar determination", J. BIOL. CHEM., (1952), vol. 195, pages 19 - 23
    - NELSON, N., J. BIOL. CHEM., (1944), vol. 153, pages 375 - 380
    - SOMOGYI, M., J. BIOL. CHEM., (1952), vol. 195, pages 19 - 23
    - VAN DE VEN, CRIT. REV. ONCOG., (1993), vol. 4, no. 2, pages 115 - 136
    - CARUTHERS, NUCLEIC ACIDS RES. SYMP. SER., (1980), pages 215 - 223
    - HORN, NUCLEIC ACIDS RES. SYMP. SER., (1980), pages 225 - 232
    - ROBERGE, SCIENCE, (1995), vol. 269, page 202
    - MERRIFIELD, METHODS ENZYMOL., (1997), vol. 289, pages 3 - 13
    - Posttranslational Covalent Modification of Proteins, ACADEMIC PRESS, (1983), pages 1 - 12
    - MERRIFIELD, R. B., J AM. CHEM. SOC., (1963), vol. 85, pages 2149 - 2154
    - STEWART, J. M.; YOUNG, J. D., Solid Phase Peptide Synthesis, PIERCE CHEMICAL CO., pages 11 - 12
    - H. M. GEYSEN ET AL., PROC. NATL. ACAD SCI., USA, (1984), vol. 81, page 3998
    - "Chemistry and Biochemistry of Amino Acids, Peptides and Proteins", SPATOLA, Peptide Backbone Modifications, MARCELL DEKKER, (1983), vol. 7, pages 267 - 357
    - MERRIFIELD, R. B., J. AM. CHEM. SOC., (1963), vol. 85, pages 2149 - 2154
    - H. M. GEYSEN ET AL., PROC. NATL. ACAD. SCI., USA, (1984), vol. 81, page 3998
    - NIELSEN, "Identification of prokaryotic and eukaryotic signal peptides and prediction of their cleavage sites.", PROTEIN ENGINEERING, (1997), vol. 10, doi:doi:10.1093/protein/10.1.1, pages 1 - 6, XP002200196

DOI:   http://dx.doi.org/10.1093/protein/10.1.1
    - HENRISSAT, BIOCHEM. J., (1991), vol. 280, pages 309 - 316
    - HENRISSAT, BIOCHEM. J., (1993), vol. 293, pages 781 - 788
    - HENRISSAT, BIOCHEM. J., (1996), vol. 316, pages 695 - 696
    - HENRISSAT, PLANT PHYSIOLOGY, (2000), vol. 124, pages 1515 - 1519
    - JOHNSTON, CURR. BIOL., (1998), vol. 8, pages RI71 - RI74
    - SCHUMMER, BIOTECHNIQUES, (1997), vol. 23, pages 1087 - 1092
    - SOLINAS-TOLDO, GENES, CHROMOSOMES & CANCER, (1997), vol. 20, pages 399 - 407
    - BOWTELL, NATURE GENETICS, (1999), vol. 21, pages 25 - 32
    - WILSON, J. IMMUNOL. METHODS, (1994), vol. 175, pages 267 - 273
    - YARMUSH, J. BIOCHEM. BIOPHYS. METHODS, (1992), vol. 25, pages 85 - 97
    - WARD ET AL., NATURE, (1989), vol. 341, pages 544 - 546
    - BASIC AND CLINICAL IMMUNOLOGY, LANGE MEDICAL PUBLICATIONS
    - KOHLER, NATURE, (1975), vol. 256, page 495
    - HOOGENBOOM, TRENDS BIOTECHNOL., (1997), vol. 15, pages 62 - 70
    - KATZ, ANNU. REV. BIOPHYS. BIOMOL. STRUCT., (1997), vol. 26, pages 27 - 45
    - KOHLER; MILSTEIN, NATURE, (1975), vol. 256, pages 495 - 497
    - KOZBOR ET AL., IMMUNOLOGY TODAY, (1983), vol. 4, page 72
    - COLE ET AL., Monoclonal Antibodies and Cancer Therapy, ALAN R. LISS, INC., (1985), pages 77 - 96
    - "Methods for Measuring Cellulase Activities", METHODS IN ENZYMOLOGY, vol. 160, pages 87 - 116
    - KREUZER, BR. J. HAEMATOL., (2001), vol. 114, pages 313 - 318
    - XIA, TRANSPLANTATION, (2001), vol. 72, pages 907 - 914
    - NEO, J. WOOD CHEM. TECH., (1986), vol. 6, no. 2, page 147
    - HOONDAL, APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, (2002), vol. 59, pages 409 - 418
    - BEDFORD ET AL., PROCEEDINGS OF THE 1ST SYMPOSIUM ON ENZYMES IN ANIMAL NUTRITION, (1993), pages 73 - 77
    - GOUBET, F.; JACKSON, P.; DEERY, M.; DUPREE, P., ANAL. BIOCHEM., (2002), vol. 300, pages 53 - 68
    - NELSON, "Reducing Sugar Assay for Xylanase", J. BIOL. CHEM., (1944), vol. 153, pages 375 - 380
    - SOMOGYI, J. BIOL. CHEM., (1952), vol. 195, pages 19 - 23
    - JOHNSTON, D.B.; SHOEMAKER, S.P.; SMITH, G.M.; WHITAKER, J.R., "Kinetic Measurement of Cellulase Activity on Insoluble Substrates Using Disodium 2,2' Bicinchoninate", JOURNAL OF FOOD BIOCHEMISTRY, (1998), vol. 4, pages 301 - 319
    - BRADFORD, M. M., "A Rapid and Sensitive Method for the Quantitation of Microgram Quantities of Protein Utilizing the Principle of Protein-Dye Binding", ANAL. BIOCHEM., (1976), vol. 72, pages 248 - 25
 US19990407800
 WO1994US09174
 US19990332835
 WO2000US01203
 US20000618579
 US20000656549
The EPO accepts no responsibility for the accuracy of data originating from other authorities; in particular, it does not guarantee that it is complete, up to date or fit for specific purposes.