A small periplasmic protein essential for Cytophaga hutchinsonii cellulose digestion
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Title
A small periplasmic protein essential for Cytophaga hutchinsonii cellulose digestion
Authors
Keywords
<em class=EmphasisTypeItalic >Cytophaga hutchinsonii</em>, Cellulose degradation, Transposon mutagenesis, Periplasmic protein, Colony spreading, Gliding motility
Journal
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume 100, Issue 4, Pages 1935-1944
Publisher
Springer Nature
Online
2015-12-09
DOI
10.1007/s00253-015-7204-y
References
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Related references
Note: Only part of the references are listed.- Expression and characteristics of a Ca2+-dependent endoglucanase from Cytophaga hutchinsonii
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- Characterization of a multi-function processive endoglucanase CHU_2103 from Cytophaga hutchinsonii
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- (2014) Tatyana Goldberg et al. NUCLEIC ACIDS RESEARCH
- Deletion of the Cytophaga hutchinsonii type IX secretion system gene sprP results in defects in gliding motility and cellulose utilization
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- Flavobacterium johnsoniae GldK, GldL, GldM, and SprA Are Required for Secretion of the Cell Surface Gliding Motility Adhesins SprB and RemA
- (2013) A. Shrivastava et al. JOURNAL OF BACTERIOLOGY
- Two Major Facilitator Superfamily Sugar Transporters fromTrichoderma reeseiand Their Roles in Induction of Cellulase Biosynthesis
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- A new locus affects cell motility, cellulose binding, and degradation by Cytophaga hutchinsonii
- (2012) Xiaofei Ji et al. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
- Gliding Motility and Por Secretion System Genes Are Widespread among Members of the Phylum Bacteroidetes
- (2012) Mark J. McBride et al. JOURNAL OF BACTERIOLOGY
- SignalP 4.0: discriminating signal peptides from transmembrane regions
- (2011) Thomas Nordahl Petersen et al. NATURE METHODS
- Cellulose and cellodextrin utilization by the cellulolytic bacterium Cytophaga hutchisonii
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- A protein secretion system linked to bacteroidete gliding motility and pathogenesis
- (2009) K. Sato et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- Three Microbial Strategies for Plant Cell Wall Degradation
- (2008) David B. Wilson Annals of the New York Academy of Sciences
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