Characterization of Two Endo-β-1, 4-Xylanases from and Their Saccharification Efficiencies, Synergistic with Commercial Cellulase.

Front Microbiol

Beijing Advanced Innovation Center for Food Nutrition and Human Health, MOA Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing, China.

Published: February 2018


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Article Abstract

The xylanases with high specific activity and resistance to harsh conditions are of high practical value for biomass utilization. In the present study, two new GH11 xylanase genes, and , have been cloned from thermophilic fungus and expressed in . The specific activities of purified xylanases reach approximately 1,533.7 and 1,412.5 U/mg, respectively. Based on multiple template-based homology modeling, the structures of their catalytic domains are predicted. Enzyme activity was more effective in 7.5 L fermentor, yielding 2,010.4 and 2,004.2 U/mL, respectively. Both enzymes exhibit optimal activity at 60°C with pH of 6.0 and 7.0, respectively. Their activities are not affected by EDTA and an array of metal ions. The kinetic constants have been determined for MYCTH_56237 ( = 8.80 mg/mL, = 2,380 U/mg) and MYCTH_49824 ( = 5.67 mg/mL, = 1,750 U/mg). More importantly, both xylanases significantly cooperate with the commercial cellulase Celluclast 1.5 L in terms of the saccharification efficiency. All these biochemical properties of the xylanases offer practical potential for future applications.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5817056PMC
http://dx.doi.org/10.3389/fmicb.2018.00233DOI Listing

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