首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Mutational analysis of the BPTI folding pathway: II. Effects of aromatic--leucine substitutions on folding kinetics and thermodynamics.
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Mutational analysis of the BPTI folding pathway: II. Effects of aromatic--leucine substitutions on folding kinetics and thermodynamics.

机译:BPTI折叠途径的突变分析:II。芳香族-亮氨酸取代对折叠动力学和热力学的影响。

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摘要

The rates of the individual steps in the disulfide-coupled folding and unfolding of eight BPTI variants, each containing a single aromatic to leucine amino acid replacement, were measured. From this analysis, the contributions of the four phenylalanine and four tyrosine residues to the stabilities of the native protein and the disulfide-bonded folding intermediates were determined. While the substitutions were found to destabilize the native protein by 2 to 7 kcal/mol, they had significantly smaller effects on the intermediates that represent the earlier stages of folding, even when the site of the substitution was located within the ordered regions of the intermediates. These results suggest that stabilizing interactions contribute less to conformational stability in the context of a partially folded intermediate than in a fully folded native protein, perhaps because of decreased cooperativity among the individual interactions. The kinetic analysis also provides new information about the transition states associated with the slowest steps in folding and unfolding, supporting previous suggestions that these transition states are extensively unfolded. Although the substitutions caused large changes in the distribution of folding intermediates and in the rates of some steps in the folding pathway, the kinetically-preferred pathway for all of the variants involved intramolecular disulfide rearrangements, as observed previously for the wild-type protein. These results suggest that the predominance of the rearrangement mechanism reflects conformational constraints present relatively early in the folding pathway.
机译:测量了八个BPTI变体在二硫键偶联的折叠和解折叠中各个步骤的速率,每个BPTI变体包含一个芳香族至亮氨酸的氨基酸替代物。通过该分析,确定了四个苯丙氨酸和四个酪氨酸残基对天然蛋白和二硫键折叠中间体的稳定性的贡献。尽管发现取代会使原始蛋白质不稳定2至7 kcal / mol,但即使对取代位点位于中间体的有序区域内,它们对代表折叠早期的中间体的影响也要小得多。这些结果表明,稳定的相互作用在部分折叠的中间体中比在完全折叠的天然蛋白中对构象稳定性的贡献较小,这可能是由于各个相互作用之间的协同作用降低了。动力学分析还提供了有关与折叠和展开中最慢的步骤相关的过渡状态的新信息,从而支持了有关这些过渡状态被广泛展开的先前建议。尽管取代引起折叠中间体的分布和折叠途径中某些步骤的速率发生了很大变化,但是所有变体的动力学优选途径都涉及分子内二硫键重排,如先前对野生型蛋白的观察。这些结果表明,重排机制的优势反映了在折叠途径中相对较早出现的构象约束。

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