【2h】

Folding specificity induced by loop stiffness

机译:环刚度引起的折叠特异性

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摘要

To test the importance of loop stiffness in restricting the heterogeneity of transition state ensemble, we relaxed the distal loop of 10 unstable redesigned hydrophobic core mutants of α-spectrin SH3 domain. This was achieved by replacing Asp48 by Gly at the tip of the distal hairpin. Although the change was local in nature, the effect on stabilization was not uniform across the core mutants tested. There is an inverse rough correlation between the stabilization and the increase in buried hydrophobic volume, with respect to the wild type. Interestingly enough, proteins that although unstable are properly folded become molten globule-like after relaxation of the distal loop. These results highlight the importance of stiffness in restricting the conformational heterogeneity of a protein during the folding reaction. An interplay between unspecific hydrophobic interactions and constraint induced by polar interactions, or in this case local stiffness, is essential to achieve a well-ordered folded structure.
机译:为了测试环路刚度在限制过渡态集合异质性中的重要性,我们放松了10个不稳定的重新设计的α-spectrinSH3域疏水核心突变体的远端环。这是通过在远端发夹尖端用Gly取代Asp48来实现的。尽管变化本质上是局部的,但对稳定度的影响在所测试的核心突变体中并不均匀。相对于野生型,稳定度与埋入疏水性体积的增加之间存在反比的粗糙相关性。有趣的是,即使不稳定折叠的蛋白质也可以在远端环松弛后变成熔融的小球状。这些结果突出了刚度在限制折叠反应过程中蛋白质构象异质性中的重要性。非特异性疏水相互作用和极性相互作用引起的约束之间的相互作用,或者在这种情况下是局部刚度,对于获得有序的折叠结构至关重要。

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