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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Role of Met93 and Thr96 in the Lid hinge region of rhizopus chinensis lipase
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Role of Met93 and Thr96 in the Lid hinge region of rhizopus chinensis lipase

机译:Met93和Thr96在根霉脂肪酶盖铰链区中的作用

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We engineered Rhizopus chinensis lipase to study its critical amino acid role in catalytic properties. Based on the amino acid sequence and three-dimensional model of the lipase, residues located in its lid hinge region (Met93 and Thr96) were replaced with corresponding amino acid residues (Ile93 and Asn96) found in the lid hinge region of Rhizopus oryzae lipase. The substitutions in the lid hinge region affected not only substrate specificity but also the thermostability of the lipase. Both lipases preferred p-nitrophenyl laurate and glyceryl trilaurate (C12). However, the variant S4-3O showed a slight decline in activity toward long-chain fatty acid (C16-C18). When enzymes activities decreased by half, the temperature of the variant (45 °C) was 22 °C lower than the parent (67 °C), probably substantially destabilized the structure of the lid region. The interfacial kinetic analysis of S4-3O suggested that the lower catalytic efficiency was due to a higher K m*value. According to the lipase structure investigated, Ile93Met played a role of narrowing the size of the hydrophobic patch, which affected the substrate binding affinity, and Asn96Thr destabilized the structure of the lipase by disrupting the H-bond interaction in the lid region.
机译:我们设计了中华根霉脂肪酶,以研究其在催化性能中的关键氨基酸作用。根据脂肪酶的氨基酸序列和三维模型,将位于其盖铰链区(Met93和Thr96)中的残基替换为在米根霉脂肪酶的盖铰链区中找到的相应氨基酸残基(Ile93和Ast96)。盖铰链区中的取代不仅影响底物特异性,而且影响脂肪酶的热稳定性。两种脂肪酶均优选月桂对硝基苯基酯和三月桂酸甘油酯(C12)。然而,变体S4-3O显示出对长链脂肪酸(C16-C18)的活性略有下降。当酶活性降低一半时,变体的温度(45°C)比亲本的温度(67°C)低22°C,这可能会使盖区的结构不稳定。 S4-3O的界面动力学分析表明较低的催化效率是由于较高的K m *值。根据研究的脂肪酶结构,Ile93Met发挥了缩小疏水膜片大小的作用,这影响了底物结合亲和力,而Asn96Thr通过破坏盖区域的H键相互作用而使脂肪酶的结构不稳定。

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