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一种提高蛋白酶热稳定性的新方法。

A new way of enhancing the thermostability of proteases.

作者信息

Imanaka T, Shibazaki M, Takagi M

出版信息

Nature. 1986;324(6098):695-7. doi: 10.1038/324695a0.

Abstract

Thermostability of enzyme can be enhanced by single amino acid substitutions. Recent advances in genetic engineering have made it possible to create novel proteins in a predictable manner where structural information for the protein is available. This 'protein engineering' has already been used to enhance enzyme thermostability, but it is usually not clear which amino acid substitutions should be made. We consider that the following approach should be helpful in engineering proteins with enhanced thermostability: highly conserved residues should be left unchanged; the sequences of known mesophilic and thermophilic proteins should be used to suggest the kinds of changes likely to increase thermostability; and substitutions should be made that increase internal hydrophobicity and that stabilize helices for strong internal packing. We describe here the use of this approach to alter the thermostability of the thermostable neutral protease of Bacillus stearothermophilus, the sequence of which is known. Surprisingly we find that a single mutation that decreases thermostability can require two mutations that increase stability to compensate for it. The effects on stability are not additive, suggesting cooperativity.

摘要

通过单个氨基酸替换可以提高酶的热稳定性。基因工程的最新进展使得以可预测的方式创造新型蛋白质成为可能,前提是该蛋白质的结构信息是已知的。这种“蛋白质工程”已被用于提高酶的热稳定性,但通常不清楚应该进行哪些氨基酸替换。我们认为,以下方法有助于构建具有更高热稳定性的蛋白质:高度保守的残基应保持不变;已知的嗜温蛋白和嗜热蛋白的序列应被用于提示可能增加热稳定性的变化类型;应进行能够增加内部疏水性并稳定螺旋以实现紧密内部堆积的替换。我们在此描述了使用这种方法来改变嗜热脂肪芽孢杆菌热稳定中性蛋白酶的热稳定性,其序列是已知的。令人惊讶的是,我们发现一个降低热稳定性的单一突变可能需要两个增加稳定性的突变来补偿它。对稳定性的影响不是累加的,这表明存在协同作用。

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