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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Conformational dynamics is more important than helical propensity for the folding of the all α-helical protein Im7
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Conformational dynamics is more important than helical propensity for the folding of the all α-helical protein Im7

机译:对于所有α-螺旋蛋白Im7的折叠,构象动力学比螺旋倾向更重要

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摘要

Im7 folds via an on-pathway intermediate that contains three of the four native α-helices. The missing helix, helix III, is the shortest and its failure to be formed until late in the pathway is related to frustration in the structure. Im7H3M3, a 94-residue variant of the 87-residue Im7 in which helix III is the longest of the four native helices, also folds via an intermediate. To investigate the structural basis for this we calculated the frustration in the structure of Im7H3M3 and used NMR to investigate its dynamics. We found that the native state of Im7H3M3 is highly frustrated and in equilibrium with an intermediate state that lacks helix III, similar to Im7. Modelfree analysis identified residues with chemical exchange contributions to their relaxation that aligned with the residues predicted to have highly frustrated interactions, also like Im7. Finally, we determined properties of urea-denatured Im7H3M3 and identified four clusters of interacting residues that corresponded to the a-helices of the native protein. In Im7 the cluster sizes were related to the lengths of the α-helices with cluster III being the smallest but in Im7H3M3 cluster III was also the smallest, despite this region forming the longest helix in the native state. These results suggest that the conformational properties of the urea-denatured states promote formation of a three-helix intermediate in which the residues that form helix III remain non-helical. Thus it appears that features of the native structure are formed early in folding linked to collapse of the unfolded state.
机译:Im7通过包含四个天然α螺旋中的三个螺旋的中间中间体折叠。缺失的螺旋,III号螺旋,是最短的,并且直到形成该通道的后期才能形成的失败与结构的受挫有关。 Im7H3M3是87个残基的Im7的94个残基变体,其中螺旋III是四个天然螺旋中最长的一个,它也通过一个中间体折叠。为了研究其结构基础,我们计算了Im7H3M3结构的受挫程度,并使用NMR对其动力学进行了研究。我们发现,Im7H3M3的原始状态高度受挫,并且与缺少螺旋III的中间状态处于平衡状态,类似于Im7。无模型分析确定了具有化学交换作用的残基,这些残基与预计具有高度受阻相互作用的残基(如Im7)对齐,因此具有松弛作用。最后,我们确定了尿素变性的Im7H3M3的性质,并鉴定了四个与天然蛋白的a螺旋相对应的相互作用残基簇。在Im7中,簇的大小与α螺旋的长度有关,簇III最小,但在Im7H3M3中,簇III也最小,尽管该区域在天然状态下形成了最长的螺旋。这些结果表明,尿素变性状态的构象性质促进了三螺旋中间体的形成,其中形成螺旋III的残基保持非螺旋状。因此看来,天然结构的特征是在折叠的早期形成的,这与展开状态的崩溃有关。

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