4.1 Article

Thermal stability engineering of Glomerella cingulata cutinase

期刊

PROTEIN ENGINEERING DESIGN & SELECTION
卷 26, 期 5, 页码 369-375

出版社

OXFORD UNIV PRESS
DOI: 10.1093/protein/gzt007

关键词

deamidation; dynamic light scattering; enzyme engineering; Glomerella cingulata cutinase; thermal stability

资金

  1. IRPA [09-02-04-001BTK/TD/004]
  2. Ministry of Science, Technology and Innovation, Malaysia
  3. Ministry of Higher Education, Malaysia [UKM-ST-01-FRGS0005-2006]

向作者/读者索取更多资源

Cutinase has been ascertained as a biocatalyst for biotechnological and industrial bioprocesses. The Glomerella cingulata cutinase was genetically modified to enhance its enzymatic performance to fulfill industrial requirements. Two sites were selected for mutagenesis with the aim of altering the surface electrostatics as well as removing a potentially deamidation-prone asparagine residue. The N177D cutinase variant was affirmed to be more resilient to temperature increase with a 2.7-fold increase in half-life at 50C as compared with wild-type enzyme, while, the activity at 25C is not compromised. Furthermore, the increase in thermal tolerance of this variant is accompanied by an increase in optimal temperature. Another variant, the L172K, however, exhibited higher enzymatic performance towards phenyl ester substrates of longer carbon chain length, yet its thermal stability is inversely affected. In order to restore the thermal stability of L172K, we constructed a L172K/N177D double variant and showed that these two mutations yield an improved variant with enhanced activity towards phenyl ester substrates and enhanced thermal stability. Taken together, our study may provide valuable information for enhancing catalytic performance and thermal stability in future engineering endeavors.

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