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首页> 外文期刊>Journal of Molecular Biology >In Vitro Evolutionary Thermostabilization of Congerin II: A Limited Reproduction of Natural Protein Evolution by Artificial Selection Pressure.
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In Vitro Evolutionary Thermostabilization of Congerin II: A Limited Reproduction of Natural Protein Evolution by Artificial Selection Pressure.

机译:Congerin II的体外进化热稳定化:通过人工选择压力对天然蛋白质进化的有限复制。

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摘要

The thermostability of the conger eel galectin, congerin II, was improved by in vitro evolutionary protein engineering. Two rounds of random PCR mutagenesis and selection experiments increased the congerin II thermostability to a level comparative to its naturally thermostable isoform, congerin I. The crystal structures of the most thermostable double mutant, Y16S/T88I, and the related single mutants, Y16S and T88I, were determined at 2.0A, 1.8A, and 1.6A resolution, respectively. The exclusion of two interior water molecules by the Thr88Ile mutation, and the relief of adjacent conformational stress by the Tyr16Ser mutation were the major contributions to the thermostability. These features in the congerin II mutants are similar to those observed in congerin I. The natural evolution of congerin genes, with the K(A)/K(S) ratio of 2.6, was accelerated under natural selection pressures. The thermostabilizing selection pressure artificially applied to congerin II mimicked the implied natural pressure on congerin I. The results showed that the artificial pressure made congerin II partially reproduce the natural evolution of congerin I.
机译:鳗鱼半凝集素congerin II的热稳定性通过体外进化蛋白工程得以改善。两轮随机PCR诱变和选择实验将congerin II的热稳定性提高到与其天然热稳定亚型congerin I相比的水平。最稳定的双重突变体Y16S / T88I以及相关的单个突变体Y16S和T88I的晶体结构分别以2.0A,1.8A和1.6A分辨率确定。 Thr88Ile突变排除了两个内部水分子,而Tyr16Ser突变减轻了邻近的构象应力,这是对热稳定性的主要贡献。 congerin II突变体中的这些特征与congerin I中观察到的特征相似。在自然选择压力下,K(A)/ K(S)比为2.6的congerin基因的自然进化得以加速。人工施加于congerin II的热稳定选择压力模拟了congerin I的隐含自然压力。结果表明,人工压力使congerin II部分再现了congerin I的自然进化。

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