| Literature DB >> 22081966 |
João Paulo L Franco Cairo1, Flávia C Leonardo, Thabata M Alvarez, Daniela A Ribeiro, Fernanda Büchli, Ana M Costa-Leonardo, Marcelo F Carazzolle, Fernando F Costa, Adriana F Paes Leme, Gonçalo Ag Pereira, Fabio M Squina.
Abstract
BACKGROUND: Lignocellulosic materials have been moved towards the forefront of the biofuel industry as a sustainable resource. However, saccharification and the production of bioproducts derived from plant cell wall biomass are complex and lengthy processes. The understanding of termite gut biology and feeding strategies may improve the current state of biomass conversion technology and bioproduct production.Entities:
Year: 2011 PMID: 22081966 PMCID: PMC3285041 DOI: 10.1186/1754-6834-4-50
Source DB: PubMed Journal: Biotechnol Biofuels ISSN: 1754-6834 Impact factor: 6.040
Figure 1Enzymatic activity evaluation of termite crude extract against commercial polysaccharides and synthetic substrates at different pHs. (A) Enzymatic assays using glucose-containing polysaccharides. (B) Enzymatic assays using hemicellulosic polysaccharides. (C) Enzymatic assays using p-nitrophenyl derivatives.
Figure 2Distribution of different unique peptides identified with similarity with CAZy families. MS/MS analyses from C. gestroi digestome showed unambiguous assignments for 68 different unique peptides, which were distributed in 29 different CAZy families. MS/MS: in tandem mass spectrometry.
Figure 3Capillary zone electrophoresis of APTS-labeled oligosaccharides and SDS-PAGE analysis of FPLC positive screened derived fraction. (A) Enzymatic activity mediated by IEX4-37 on cellopentaose, a positively screened FPLC fraction derived from C. gestroi crude extract with a unique peptide match to a GH7. The enzyme source specifically cleaved internal glycosidic bonds of APTS-reducing-end-labeled-cellopentaose (arrows), releasing mainly cellotriose as hydrolysis product. (B) Complete hydrolysis of APTS-reducing-end-labeled-mannohexaose by IEX1-26, a positively screened FPLC fraction derived from C. gestroi crude extract with a unique peptide match to a GH2. The enzyme source specifically cleaved internal glycosidic bonds of mannohexaose (arrows), releasing mainly mannobiose and mannotriose as final product. (C) SDS-PAGE analysis of fractions IEX4-37 (lane1) and IEX1-26 (lane 2). A unique band of 50 kDa was observed after Coomassie blue staining for IEX4-37 (lane 1), and bands of about 80 kDa were observed for IEX1-26 after silver staining. (M) Protein Ladder. APTS: 8-aminopyreno-1,3,6-trisulfonic acid; FPLC: fast performance liquid chromatography; GH: glycoside hydrolases; IEX: ion-exchange.