4.7 Article

A differentially conserved residue (Ile42) of GH42 β-galactosidase from Geobacillus stearothermophilus BgaB is involved in both catalysis and thermostability

期刊

JOURNAL OF DAIRY SCIENCE
卷 98, 期 4, 页码 2268-2276

出版社

ELSEVIER SCIENCE INC
DOI: 10.3168/jds.2014-9117

关键词

beta-galactosidase; glycoside hydrolase family GH42; thermostability; saturation mutagenesis; differentially conserved residue

资金

  1. National Natural Science Foundation of China [31301523, 31171636, 30901129]
  2. National High Technology Research and Development Program of China [2011AA100905]
  3. Program for New Century Excellent Talents [NCET-13-0831]
  4. Program for Changjiang Scholars and Innovative Research Team in University [IRT1249]
  5. Anhui Provincial University Natural Science Research Project [KJ2013B187]
  6. Anhui Provincial Chuzhou University Research Startup Foundation [2012qd14]

向作者/读者索取更多资源

The glycoside hydrolase family 42 (GH42) of thermophilic microorganisms consists of thermostable beta-galactosidases that display significant variations in their temperature optima and stabilities. In this study, we compared the substrate binding modes of 2 GH42 beta-galactosidases, BgaB from Geobacillus stearothermophilus and A4-beta-Gal from Thermus thermophilus A4. The A4-beta-Gal has a catalytic triad (Glu312-Arg32-Glu35) with an extended hydrogen bond network that has not been observed in BgaB. In this study, we performed site-saturation mutagenesis of Ile42 in BgaB (equivalent to Glu312 in A4-beta-Gal) to study the effects of different residues on thermostability, catalytic function, and the extended hydrogen bond network. Our experimental results suggest that substitution of Ile42 with polar AA enhanced the thermostability but decreased the catalytic efficiency of BgaB. Polar AA substitution for Ile42 simultaneously affected thermostability, catalytic efficiency, and the hydrogen bond network, suggesting that Ile42 is responsible for functional discrimination between members of the GH42 family. These observations could lead to a novel strategy for investigating the functional evolution of the GH42 beta-galactosidases.

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