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不稳定的头部-杆部连接可能会促使调节型肌球蛋白折叠成紧密的非活性状态构象。

An unstable head-rod junction may promote folding into the compact off-state conformation of regulated myosins.

作者信息

Brown Jerry H, Yang Yuting, Reshetnikova Ludmilla, Gourinath S, Süveges Dániel, Kardos József, Hóbor Fruzsina, Reutzel Robbie, Nyitray László, Cohen Carolyn

机构信息

Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, MA 02454-9110, USA.

出版信息

J Mol Biol. 2008 Feb 1;375(5):1434-43. doi: 10.1016/j.jmb.2007.11.071. Epub 2007 Nov 28.

Abstract

The N-terminal region of myosin's rod-like subfragment 2 (S2) joins the two heads of this dimeric molecule and is key to its function. Previously, a crystal structure of this predominantly coiled-coil region was determined for a short fragment (51 residues plus a leucine zipper) of the scallop striated muscle myosin isoform. In that study, the N-terminal 10-14 residues were found to be disordered. We have now determined the structure of the same scallop peptide in three additional crystal environments. In each of two of these structures, improved order has allowed visualization of the entire N-terminus in one chain of the dimeric peptide. We have also compared the melting temperatures of this scallop S2 peptide with those of analogous peptides from three other isoforms. Taken together, these experiments, along with examination of sequences, point to a diminished stability of the N-terminal region of S2 in regulated myosins, compared with those myosins whose regulation is thin filament linked. It seems plain that this isoform-specific instability promotes the off-state conformation of the heads in regulated myosins. We also discuss how myosin isoforms with varied thermal stabilities share the basic capacity to transmit force efficiently in order to produce contraction in their on states.

摘要

肌球蛋白杆状亚片段2(S2)的N端区域连接着这个二聚体分子的两个头部,是其功能的关键。此前,已确定了扇贝横纹肌肌球蛋白同工型的一个短片段(51个残基加一个亮氨酸拉链)的这个主要为卷曲螺旋区域的晶体结构。在该研究中,发现N端的10 - 14个残基是无序的。我们现在已在另外三种晶体环境中确定了相同扇贝肽的结构。在其中两种结构中,由于有序性的改善,得以在二聚体肽的一条链中可视化整个N端。我们还比较了这种扇贝S2肽与其他三种同工型的类似肽的解链温度。综合这些实验以及对序列的研究表明,与调节与细肌丝相关的肌球蛋白相比,调节型肌球蛋白中S2的N端区域稳定性降低。显然,这种同工型特异性的不稳定性促进了调节型肌球蛋白头部的关闭状态构象。我们还讨论了具有不同热稳定性的肌球蛋白同工型如何在开启状态下共享有效传递力以产生收缩的基本能力。

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