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Isolation and characterization of a novel endo-ß-1,4-glucanase from a metagenomic library of the black-goat rumen.
Song, Yun-Hee; Lee, Kyung-Tai; Baek, Jin-Young; Kim, Min-Ju; Kwon, Mi-Ra; Kim, Young-Joo; Park, Mi-Rim; Ko, Haesu; Lee, Jin-Sung; Kim, Keun-Sung.
Affiliation
  • Song YH; Department of Food Science and Technology, Chung-Ang University, Ansung 456-756, South Korea.
  • Lee KT; Animal Genomics and Bioinformatics Division, National Institute of Animal Science, Rural Development Administration, Wanju, South Korea.
  • Baek JY; Department of Food Science and Technology, Chung-Ang University, Ansung 456-756, South Korea.
  • Kim MJ; Department of Food Science and Technology, Chung-Ang University, Ansung 456-756, South Korea.
  • Kwon MR; Animal Genomics and Bioinformatics Division, National Institute of Animal Science, Rural Development Administration, Wanju, South Korea.
  • Kim YJ; Animal Genomics and Bioinformatics Division, National Institute of Animal Science, Rural Development Administration, Wanju, South Korea.
  • Park MR; Animal Genomics and Bioinformatics Division, National Institute of Animal Science, Rural Development Administration, Wanju, South Korea.
  • Ko H; Animal Genomics and Bioinformatics Division, National Institute of Animal Science, Rural Development Administration, Wanju, South Korea.
  • Lee JS; Department of Biological Sciences, Kyonggi University, Suwon, South Korea. Electronic address: lejis@daum.net.
  • Kim KS; Department of Food Science and Technology, Chung-Ang University, Ansung 456-756, South Korea. Electronic address: keunsung@cau.ac.kr.
Braz J Microbiol ; 48(4): 801-808, 2017.
Article in En | MEDLINE | ID: mdl-28689814
ABSTRACT
The various types of lignocellulosic biomass found in plants comprise the most abundant renewable bioresources on Earth. In this study, the ruminal microbial ecosystem of black goats was explored because of their strong ability to digest lignocellulosic forage. A metagenomic fosmid library containing 115,200 clones was prepared from the black-goat rumen and screened for a novel cellulolytic enzyme. The KG35 gene, containing a novel glycosyl hydrolase family 5 cellulase domain, was isolated and functionally characterized. The novel glycosyl hydrolase family 5 cellulase gene is composed of a 963-bp open reading frame encoding a protein of 320 amino acid residues (35.1kDa). The deduced amino acid sequence showed the highest sequence identity (58%) for sequences from the glycosyl hydrolase family 5 cellulases. The novel glycosyl hydrolase family 5 cellulase gene was overexpressed in Escherichia coli. Substrate specificity analysis revealed that this recombinant glycosyl hydrolase family 5 cellulase functions as an endo-ß-1,4-glucanase. The recombinant KG35 endo-ß-1,4-glucanase showed optimal activity within the range of 30-50°C at a pH of 6-7. The thermostability was retained and the pH was stable in the range of 30-50°C at a pH of 5-7.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Rumen / Bacteria / Bacterial Proteins / Cellulase Limits: Animals Language: En Journal: Braz J Microbiol Year: 2017 Document type: Article Affiliation country: Corea del Sur

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Rumen / Bacteria / Bacterial Proteins / Cellulase Limits: Animals Language: En Journal: Braz J Microbiol Year: 2017 Document type: Article Affiliation country: Corea del Sur