首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Conservative mutation Met8 -- Leu affects the folding process and structural stability of squash trypsin inhibitor CMTI-I.
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Conservative mutation Met8 -- Leu affects the folding process and structural stability of squash trypsin inhibitor CMTI-I.

机译:保守突变Met8- Leu影响壁球胰蛋白酶抑制剂CMTI-1的折叠过程和结构稳定性。

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摘要

Protein molecules can accommodate a large number of mutations without noticeable effects on their stability and folding kinetics. On the other hand, some mutations can have quite strong effects on protein conformational properties. Such mutations either destabilize secondary structures, e.g., alpha-helices, are incompatible with close packing of protein hydrophobic cores, or lead to disruption of some specific interactions such as disulfide cross links, salt bridges, hydrogen bonds, or aromatic-aromatic contacts. The Met8 --> Leu mutation in CMTI-I results in significant destabilization of the protein structure. This effect could hardly be expected since the mutation is highly conservative, and the side chain of residue 8 is situated on the protein surface. We show that the protein destabilization is caused by rearrangement of a hydrophobic cluster formed by side chains of residues 8, Ile6, and Leu17 that leads to partial breaking of a hydrogen bond formed by the amide group of Leu17 with water and to a reduction of a hydrophobic surface buried within the cluster. The mutation perturbs also the protein folding. In aerobic conditions the reduced wild-type protein folds effectively into its native structure, whereas more then 75% of the mutant molecules are trapped in various misfolded species. The main conclusion of this work is that conservative mutations of hydrophobic residues can destabilize a protein structure even if these residues are situated on the protein surface and partially accessible to water. Structural rearrangement of small hydrophobic clusters formed by such residues can lead to local changes in protein hydration, and consequently, can affect considerably protein stability and folding process.
机译:蛋白质分子可以容纳大量突变,而对其稳定性和折叠动力学没有明显影响。另一方面,某些突变可以对蛋白质构象特性产生很大的影响。这样的突变或者破坏二级结构(例如,α-螺旋)的稳定性,与蛋白疏水核的紧密堆积不相容,或者导致某些特定相互作用的破坏,例如二硫键,盐桥,氢键或芳族-芳族接触。 CMTI-1中的Met8-> Leu突变导致蛋白质结构显着不稳定。由于突变是高度保守的,并且残基8的侧链位于蛋白质表面,因此几乎无法预期到这种效果。我们表明,蛋白质不稳定是由疏水残基8,Ile6和Leu17侧链形成的疏水簇的重排引起的,该疏水簇导致由Leu17的酰胺基与水形成的氢键的部分断裂和a的还原疏水表面埋在簇中。突变也扰乱了蛋白质折叠。在有氧条件下,减少的野生型蛋白有效折叠成其天然结构,而超过75%的突变分子被困在各种错折叠的物种中。这项工作的主要结论是,疏水残基的保守突变会破坏蛋白质结构的稳定性,即使这些残基位于蛋白质表面且部分可被水接触。由这些残基形成的小的疏水簇的结构重排可导致蛋白质水合的局部变化,因此,可显着影响蛋白质的稳定性和折叠过程。

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