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首页> 外文期刊>Journal of Molecular Biology >Preformed secondary structure drives the association reaction of GCN4-p1, a model coiled-coil system.
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Preformed secondary structure drives the association reaction of GCN4-p1, a model coiled-coil system.

机译:预制的二级结构驱动模型螺旋线圈系统GCN4-p1的缔合反应。

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摘要

The structure of the transition state for the rate-limiting step in the folding and association of the homodimeric coiled-coil peptide GCN4-p1, was probed by mutational analysis. A series of quadruple amino acid replacements that spanned the helix propensity scale were made at the four external f positions in the heptad repeat. Equilibrium and kinetic circular dichroism studies demonstrate that both the stability and the unfolding and refolding rate constants vary with helix propensity but also reflect interactions of the altered side-chains with their local environments. Pairwise replacements and fragment studies show that the two C-terminal heptads are the likely source of the nucleating helices. Helix-helix recognition between preformed elements of secondary structure plays an important role in this fundamental folding reaction. Copyright 2000 Academic Press.
机译:通过突变分析探查了同二聚体卷曲螺旋肽GCN4-p1的折叠和缔合中限速步骤的过渡态结构。在七肽重复序列的四个外部f位置进行了一系列跨越螺旋倾向量表的四倍氨基酸替换。平衡和动力学圆二色性研究表明,稳定性,解折叠速率和重折叠速率常数均随螺旋倾向而变化,但也反映了改变的侧链与其局部环境的相互作用。成对替换和片段研究表明,两个C末端七肽可能是成核螺旋的来源。二级结构的预形成元素之间的螺旋-螺旋识别在该基本折叠反应中起重要作用。版权所有2000学术出版社。

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