Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose

Anusree M, Wendisch VF, Nampoothiri MK (2016)
Bioresource Technology 213: 239-244.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Anusree, Murali; Wendisch, Volker F.UniBi ; Nampoothiri, Madhavan K.
Erscheinungsjahr
2016
Zeitschriftentitel
Bioresource Technology
Band
213
Seite(n)
239-244
ISSN
0960-8524
eISSN
1873-2976
Page URI
https://pub.uni-bielefeld.de/record/2901508

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Anusree M, Wendisch VF, Nampoothiri MK. Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose. Bioresource Technology. 2016;213:239-244.
Anusree, M., Wendisch, V. F., & Nampoothiri, M. K. (2016). Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose. Bioresource Technology, 213, 239-244. doi:10.1016/j.biortech.2016.03.019
Anusree, Murali, Wendisch, Volker F., and Nampoothiri, Madhavan K. 2016. “Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose”. Bioresource Technology 213: 239-244.
Anusree, M., Wendisch, V. F., and Nampoothiri, M. K. (2016). Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose. Bioresource Technology 213, 239-244.
Anusree, M., Wendisch, V.F., & Nampoothiri, M.K., 2016. Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose. Bioresource Technology, 213, p 239-244.
M. Anusree, V.F. Wendisch, and M.K. Nampoothiri, “Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose”, Bioresource Technology, vol. 213, 2016, pp. 239-244.
Anusree, M., Wendisch, V.F., Nampoothiri, M.K.: Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose. Bioresource Technology. 213, 239-244 (2016).
Anusree, Murali, Wendisch, Volker F., and Nampoothiri, Madhavan K. “Co-expression of endoglucanase and β-glucosidase in Corynebacterium glutamicum DM1729 towards direct lysine fermentation from cellulose”. Bioresource Technology 213 (2016): 239-244.

5 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Synthetic biology approaches to access renewable carbon source utilization in Corynebacterium glutamicum.
Zhao N, Qian L, Luo G, Zheng S., Appl Microbiol Biotechnol 102(22), 2018
PMID: 30218378
1,5-Diaminopentane production from xylooligosaccharides using metabolically engineered Corynebacterium glutamicum displaying beta-xylosidase on the cell surface.
Imao K, Konishi R, Kishida M, Hirata Y, Segawa S, Adachi N, Matsuura R, Tsuge Y, Matsumoto T, Tanaka T, Kondo A., Bioresour Technol 245(pt b), 2017
PMID: 28599919
Current status on metabolic engineering for the production of l-aspartate family amino acids and derivatives.
Li Y, Wei H, Wang T, Xu Q, Zhang C, Fan X, Ma Q, Chen N, Xie X., Bioresour Technol 245(pt b), 2017
PMID: 28579173
Systematic pathway engineering of Corynebacterium glutamicum S9114 for L-ornithine production.
Zhang B, Yu M, Zhou Y, Li Y, Ye BC., Microb Cell Fact 16(1), 2017
PMID: 28938890

33 References

Daten bereitgestellt von Europe PubMed Central.

Direct L-lysine production from cellobiose by Corynebacterium glutamicum displaying beta-glucosidase on its cell surface.
Adachi N, Takahashi C, Ono-Murota N, Yamaguchi R, Tanaka T, Kondo A., Appl. Microbiol. Biotechnol. 97(16), 2013
PMID: 23749228
Mycomembrane and S-layer: two important structures of Corynebacterium glutamicum cell envelope with promising biotechnology applications
Bayan, J. Biotechnol. 104(1), 2003
Prokaryotic utilization of the twin-arginine translocation pathway: a genomic survey.
Dilks K, Rose RW, Hartmann E, Pohlschroder M., J. Bacteriol. 185(4), 2003
PMID: 12562823

Eggeling, 2005
Enzymatic assembly of DNA molecules up to several hundred kilobases.
Gibson DG, Young L, Chuang RY, Venter JC, Hutchison CA 3rd, Smith HO., Nat. Methods 6(5), 2009
PMID: 19363495
Corynebacterium glutamicum as a potent biocatalyst for the bioconversion of pentose sugars to value-added products.
Gopinath V, Murali A, Dhar KS, Nampoothiri KM., Appl. Microbiol. Biotechnol. 93(1), 2011
PMID: 22094976
Studies on transformation of Escherichia coli with plasmids.
Hanahan D., J. Mol. Biol. 166(4), 1983
PMID: 6345791
Metabolic engineering of Corynebacterium glutamicum for fuel ethanol production under oxygen-deprivation conditions.
Inui M, Kawaguchi H, Murakami S, Vertes AA, Yukawa H., J. Mol. Microbiol. Biotechnol. 8(4), 2004
PMID: 16179801
A rapid and easy method for the detection of microbial cellulases on agar plates using gram's iodine.
Kasana RC, Salwan R, Dhar H, Dutt S, Gulati A., Curr. Microbiol. 57(5), 2008
PMID: 18810533
A single V317A or V317M substitution in Enzyme II of a newly identified β-glucoside phosphotransferase and utilization system of Corynebacterium glutamicum R extends its specificity towards cellobiose
Kotrba, Microbiology 149(6), 2003
Microbial cell-surface display.
Lee SY, Choi JH, Xu Z., Trends Biotechnol. 21(1), 2003
PMID: 12480350
Microbial cellulose utilization: fundamentals and biotechnology.
Lynd LR, Weimer PJ, van Zyl WH, Pretorius IS., Microbiol. Mol. Biol. Rev. 66(3), 2002
PMID: 12209002
Display of alpha-amylase on the surface of Lactobacillus casei cells by use of the PgsA anchor protein, and production of lactic acid from starch.
Narita J, Okano K, Kitao T, Ishida S, Sewaki T, Sung MH, Fukuda H, Kondo A., Appl. Environ. Microbiol. 72(1), 2006
PMID: 16391053
Pyruvate carboxylase from Corynebacterium glutamicum: characterization, expression and inactivation of the pyc gene.
Peters-Wendisch PG, Kreutzer C, Kalinowski J, Patek M, Sahm H, Eikmanns BJ., Microbiology (Reading, Engl.) 144 ( Pt 4)(), 1998
PMID: 9579065

Sambrook, 1989
Biomass-based energy fuel through biochemical routes: a review
Saxena, Renew. Sustain. Energy Rev. 13(1), 2009
The importance of the Tat-dependent protein secretion pathway in Streptomyces as revealed by phenotypic changes in tat deletion mutants and genome analysis
Schaerlaekens, Microbiology 150(1), 2004
Utilization of soluble starch by a recombinant Corynebacterium glutamicum strain: growth and lysine production.
Seibold G, Auchter M, Berens S, Kalinowski J, Eikmanns BJ., J. Biotechnol. 124(2), 2006
PMID: 16488498
Characterization of a Corynebacterium glutamicum lactate utilization operon induced during temperature-triggered glutamate production.
Stansen C, Uy D, Delaunay S, Eggeling L, Goergen JL, Wendisch VF., Appl. Environ. Microbiol. 71(10), 2005
PMID: 16204505
Lignocellulosic ethanol in India: Prospects, challenges and feedstock availability.
Sukumaran RK, Surender VJ, Sindhu R, Binod P, Janu KU, Sajna KV, Rajasree KP, Pandey A., Bioresour. Technol. 101(13), 2009
PMID: 20018505
Recent developments in yeast cell surface display toward extended applications in biotechnology.
Tanaka T, Yamada R, Ogino C, Kondo A., Appl. Microbiol. Biotechnol. 95(3), 2012
PMID: 22652839
Production of L-Lysine from starch by Corynebacterium glutamicum displaying alpha-amylase on its cell surface.
Tateno T, Fukuda H, Kondo A., Appl. Microbiol. Biotechnol. 74(6), 2007
PMID: 17216452
Development of novel cell surface display in Corynebacterium glutamicum using porin.
Tateno T, Hatada K, Tanaka T, Fukuda H, Kondo A., Appl. Microbiol. Biotechnol. 84(4), 2009
PMID: 19430772
Glutamate production from β-glucan using endoglucanase-secreting Corynebacterium glutamicum.
Tsuchidate T, Tateno T, Okai N, Tanaka T, Ogino C, Kondo A., Appl. Microbiol. Biotechnol. 90(3), 2011
PMID: 21305281
Genetic constructs and genetically modified microbes for enhanced production of beta-glucosidase
White, Google Patents (), 2000
Microplate-based carboxymethylcellulose assay for endoglucanase activity.
Xiao Z, Storms R, Tsang A., Anal. Biochem. 342(1), 2005
PMID: 15958198
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