Your browser doesn't support javascript.
loading
Identification of a New Endo-ß-1,4-xylanase Prospected from the Microbiota of the Termite Heterotermes tenuis.
Alcobaça, Olinda S A; Campanini, Emeline B; Ciancaglini, Iara; Rocha, Sâmara V; Malavazi, Iran; Freire, Caio C M; Nunes, Francis M F; Fuentes, Andrea S C; Cunha, Anderson F.
Afiliação
  • Alcobaça OSA; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Campanini EB; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Ciancaglini I; Brazilian Biorenewables National Laboratory, Brazilian Center of Research in Energy and Materials, Campinas 13083-100, Brazil.
  • Rocha SV; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Malavazi I; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Freire CCM; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Nunes FMF; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Fuentes ASC; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
  • Cunha AF; Department of Genetics and Evolution, Federal University of São Carlos, Sao Carlos 13565-905, Brazil.
Microorganisms ; 10(5)2022 Apr 26.
Article em En | MEDLINE | ID: mdl-35630351
ABSTRACT
Xylanases are hemicellulases that break down xylan to soluble pentoses. They are used for industrial purposes, such as paper whitening, beverage clarification, and biofuel production. The second-generation bioethanol production is hindered by the enzymatic hydrolysis step of the lignocellulosic biomass, due to the complex arrangement established among its constituents. Xylanases can potentially increase the production yield by improving the action of the cellulolytic enzyme complex. We prospected endo-ß-1,4-xylanases from meta-transcriptomes of the termite Heterotermes tenuis. In silico structural characterization and functional analysis of an endo-ß-1,4-xylanase from a symbiotic protist of H. tenuis indicate two active sites and a substrate-binding groove needed for the catalytic activity. No N-glycosylation sites were found. This endo-ß-1,4-xylanase was recombinantly expressed in Pichia pastoris and Escherichia coli cells, presenting a molecular mass of approximately 20 kDa. Enzymatic activity assay using recombinant endo-ß-1,4-xylanase was also performed on 1% xylan agar stained with Congo red at 30 °C and 40 °C. The enzyme expressed in both systems was able to hydrolyze the substrate xylan, becoming a promising candidate for further analysis aiming to determine its potential for application in industrial xylan degradation processes.
Palavras-chave

Texto completo: 1 Bases de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Revista: Microorganisms Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Brasil

Texto completo: 1 Bases de dados: MEDLINE Tipo de estudo: Diagnostic_studies Idioma: En Revista: Microorganisms Ano de publicação: 2022 Tipo de documento: Article País de afiliação: Brasil