4.7 Article

Engineering improved thermostability of the GH11 xylanase from Neocallimastix patriciarum via computational library design

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 102, 期 8, 页码 3675-3685

出版社

SPRINGER
DOI: 10.1007/s00253-018-8872-1

关键词

Xylanase; XOS; Xylan; FRESCO; Thermostability

资金

  1. National Natural Science Foundation of China [21603013, 31601412]
  2. 100 Talent Program grant
  3. Biological Resources Service Network Initiative [ZSYS-012]
  4. Chinese Academy of Sciences [SKT1604]

向作者/读者索取更多资源

Xylanases, which cleave the beta-1,4-glycosidic bond between xylose residues to release xylooligosaccharides (XOS), are widely used as food additives, animal feeds, and pulp bleaching agents. However, the thermally unstable nature of xylanases would hamper their industrial application. In this study, we used in silico design in a glycoside hydrolase family (GH) 11 xylanase to stabilize the enzyme. A combination of the best mutations increased the apparent melting temperature by 14 A degrees C and significantly enhanced thermostability and thermoactivation. The variant also showed an upward-shifted optimal temperature for catalysis without compromising its activity at low temperatures. Moreover, a 10-fold higher XOS production yield was obtained at 70 A degrees C, which compensated the low yield obtained with the wild-type enzyme. Collectively, the variant constructed by the computational strategy can be used as an efficient biocatalyst for XOS production at industrially viable conditions.

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