作者
Filip Kovacic, Agathe Mandrysch, Chetan Poojari, Birgit Strodel, Karl-Erich Jaeger
发表日期
2016/2/1
期刊
Protein Engineering, Design and Selection
卷号
29
期号
2
页码范围
65-76
出版商
Oxford University Press
简介
The adaptation of microorganisms to extreme living temperatures requires the evolution of enzymes with a high catalytic efficiency under these conditions. Such extremophilic enzymes represent valuable tools to study the relationship between protein stability, dynamics and function. Nevertheless, the multiple effects of temperature on the structure and function of enzymes are still poorly understood at the molecular level. Our analysis of four homologous esterases isolated from bacteria living at temperatures ranging from 10°C to 70°C suggested an adaptation route for the modulation of protein thermal properties through the optimization of local flexibility at the protein surface. While the biochemical properties of the recombinant esterases are conserved, their thermal properties have evolved to resemble those of the respective bacterial habitats. Molecular dynamics simulations at temperatures around the …
引用总数
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F Kovacic, A Mandrysch, C Poojari, B Strodel… - Protein Engineering, Design and Selection, 2016