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肌动蛋白的机械展开揭示了展开速率对力的超指数依赖性。

Mechanical unfolding of spectrin reveals a super-exponential dependence of unfolding rate on force.

机构信息

Department of Molecular Biosciences, Northwestern University, Evanston, IL 60208, USA.

Department of Physics and Astronomy, Northwestern University, Evanston, IL 60208, USA.

出版信息

Sci Rep. 2019 Jul 31;9(1):11101. doi: 10.1038/s41598-019-46525-w.

Abstract

We investigated the mechanical unfolding of single spectrin molecules over a broad range of loading rates and thus unfolding forces by combining magnetic tweezers with atomic force microscopy. We find that the mean unfolding force increases logarithmically with loading rate at low loading rates, but the increase slows at loading rates above 1pN/s. This behavior indicates an unfolding rate that increases exponentially with the applied force at low forces, as expected on the basis of one-dimensional models of protein unfolding. At higher forces, however, the increase of the unfolding rate with the force becomes faster than exponential, which may indicate anti-Hammond behavior where the structures of the folded and transition states become more different as their free energies become more similar. Such behavior is rarely observed and can be explained by either a change in the unfolding pathway or as a reflection of a multidimensional energy landscape of proteins under force.

摘要

我们通过将磁镊与原子力显微镜相结合,在较宽的加载速率和展开力范围内研究了单个血影蛋白分子的机械展开。我们发现,在较低的加载速率下,平均展开力随加载速率呈对数增加,但在加载速率高于 1pN/s 时,增加速度会减缓。这种行为表明,在低力下,根据蛋白质展开的一维模型,展开速率随施加力呈指数增加。然而,在更高的力下,展开速率随力的增加速度比指数增加更快,这可能表明反哈蒙德行为,即折叠态和过渡态的结构变得更加不同,因为它们的自由能变得更加相似。这种行为很少被观察到,可以通过展开途径的改变或在力下蛋白质多维能量景观的反映来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe74/6668576/383b4810d6c2/41598_2019_46525_Fig1_HTML.jpg

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