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An experimental approach to evaluating the role of backbone interactions in proteins using unnatural amino acid mutagenesis

机译:使用非天然氨基酸诱变评估蛋白质中骨架相互作用的作用的实验方法

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摘要

The contribution of backbone hydrogen bonds in alpha-helices to the overall stability of a protein has been examined experimentally by replacing several backbone amide linkages in alpha-helix 39-50 of T4 lysozyme with ester linkages. T4 lysozyme variants wherein the backbone amide bonds between residues Ser38 and Leu39, Lys43 and Leu44, or Ala49 and Ile50 are replaced with ester bonds were generated by incorporating alpha-hydroxy acids at positions 39, 44, or 50, respectively, using unnatural amino acid mutagenesis. The stabilities of the proteins were determined from their thermal denaturation curves as monitored by circular dichroism. Comparison of the thermal stabilities of the amide- and ester-containing proteins shows that the ester substitution has a similar thermodynamic effect at all three positions. At the N- and C-terminal positions, where only one hydrogen-bonding interaction is perturbed, the ester substitution is destabilizing by 0.9 and 0.7 kcal/mol, respectively. Introduction of the ester linkage in the middle of the helix, which alters two hydrogen-bonding interactions, destabilizes the protein by 1.7 kcal/mol. The values obtained from these ester to amide mutations are compared to the values from similar mutations that have been made in other secondary structures and bimolecular complexes.
机译:通过用酯键替换T4溶菌酶的α-螺旋39-50中的几个主链酰胺键,已通过实验检查了α-螺旋中主链氢键对蛋白质总体稳定性的贡献。通过使用非天然氨基酸分别在39、44或50位掺入α-羟基酸生成T4溶菌酶变体,其中残基Ser38和Leu39,Lys43和Leu44或Ala49和Ile50之间的骨架酰胺键被酯键取代诱变。蛋白质的稳定性由它们的热变性曲线确定,如通过圆二色性监测的。含酰胺和含酯蛋白的热稳定性比较表明,酯取代在所有三个位置上都具有相似的热力学作用。在仅干扰一个氢键相互作用的N-和C-末端位置,酯取代分别稳定0.9和0.7kcal / mol。在螺旋中间引入酯键会改变两个氢键相互作用,从而使蛋白质失去稳定度达1.7 kcal / mol。将这些酯至酰胺突变获得的值与其他二级结构和双分子复合物中相似突变获得的值进行比较。

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