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Improved thermostability of the North American firefly luciferase: saturation mutagenesis at position 354.

机译:改善了北美萤火虫萤光素酶的热稳定性:位点354的饱和诱变。

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摘要

We have used random chemical mutagenesis and a simple genetic screen to generate and isolate a thermostable mutant of luciferase from the North American firefly (Photinus pyralis). A single G-to-A transition mutation, resulting in the substitution of a glutamate for a lysine residue at position 354 in the protein sequence, was shown to be responsible for this enhanced thermostability. Replacement of Glu-354 with all possible amino acid residues was achieved using directed mutagenesis, and produced mutant enzymes with a range of thermostabilities. The mutations E354K and E354R conferred the largest increases in thermostability, suggesting that side-chain size and hydrophobicity, as well as charge, may also be important contributors to the overall thermostability of the polypeptide chain at this position. Unusually for such mutations, biochemical studies suggest that this position is on the surface of the protein and exposed to solvent.
机译:我们已经使用随机化学诱变和简单的基因筛选从北美萤火虫(Photinus pyralis)生成和分离了萤光素酶的热稳定突变体。单个G到A的转换突变,导致谷氨酸替代了蛋白质序列中354位的赖氨酸残基,被证明是这种增强的热稳定性的原因。使用定向诱变实现了用所有可能的氨基酸残基替代Glu-354,并产生了具有一定热稳定性的突变酶。突变E354K和E354R赋予了热稳定性最大的增长,表明侧链大小和疏水性以及电荷也可能是该位置多肽链整体热稳定性的重要因素。对于此类突变,生化研究通常认为此位置位于蛋白质表面并暴露于溶剂中。

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