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Cited 14 time in webofscience Cited 14 time in scopus
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Cloning and functional characterization of endo-beta-1,4-glucanase gene from metagenomic library of vermicompost

Authors
Yasir, MuhammadKhan, HajiAzam, Syed SikanderTelke, AmarKim, Seon WonChung, Young Ryun
Issue Date
Jun-2013
Publisher
한국미생물학회
Keywords
cellulose; metagenomic; vermicompost; glycosyl hydrolase family 5
Citation
The Journal of Microbiology, v.51, no.3, pp 329 - 335
Pages
7
Indexed
SCIE
SCOPUS
KCI
Journal Title
The Journal of Microbiology
Volume
51
Number
3
Start Page
329
End Page
335
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/20636
DOI
10.1007/s12275-013-2697-5
ISSN
1225-8873
1976-3794
Abstract
In the vermicomposting of paper mill sludge, the activity of earthworms is very dependent on dietetic polysaccharides including cellulose as energy sources. Most of these polymers are degraded by the host microbiota and considered potentially important source for cellulolytic enzymes. In the present study, a metagenomic library was constructed from vermicompost (VC) prepared with paper mill sludge and dairy sludge (fresh sludge, FS) and functionally screened for cellulolytic activities. Eighteen cellulase expressing clones were isolated from about 89,000 fosmid clones libraries. A short fragment library was constructed from the most active positive clone (cMGL504) and one open reading frame (ORF) of 1,092 bp encoding an endo-beta-1,4-glucanase was indentified which showed 88% similarity with Cellvibrio mixtus cellulase A gene. The endo-beta-1,4-glucanase cmgl504 gene was overexpressed in Escherichia coli. The purified recombinant cmgl504 cellulase displayed activities at a broad range of temperature (25-55A degrees C) and pH (5.5-8.5). The enzyme degraded carboxymethyl cellulose (CMC) with 15.4 U, while having low activity against avicel. No detectable activity was found for xylan and laminarin. The enzyme activity was stimulated by potassium chloride. The deduced protein and three-dimensional structure of metagenome-derived cellulase cmgl504 possessed all features, including general architecture, signature motifs, and N-terminal signal peptide, followed by the catalytic domain of cellulase belonging to glycosyl hydrolase family 5 (GHF5). The cellulases cloned in this work may play important roles in the degradation of celluloses in vermicomposting process and could be exploited for industrial application in future.
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