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心脏肌球蛋白轻链突变 Glu98Lys 改变其结构并损害心肌舒张。

Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation.

机构信息

A.N. Bach Institute of Biochemistry, Research Center of Biotechnology, Russian Academy of Sciences, Moscow 119071, Russia.

Institute of Immunology and Physiology, Ural Branch of Russian Academy of Sciences, Yekaterinburg 620049, Russia.

出版信息

Int J Mol Sci. 2023 Aug 2;24(15):12359. doi: 10.3390/ijms241512359.

Abstract

We characterized a novel genetic variant c.292G > A (p.E98K) in the gene encoding cardiac tropomyosin 1.1 isoform (Tpm1.1), found in a proband with a phenotype of complex cardiomyopathy with conduction dysfunction and slow progressive neuromuscular involvement. To understand the molecular mechanism by which this mutation impairs cardiac function, we produced recombinant Tpm1.1 carrying an E98K substitution and studied how this substitution affects the structure of the Tpm1.1 molecule and its functional properties. The results showed that the E98K substitution in the N-terminal part of the Tpm molecule significantly destabilizes the C-terminal part of Tpm, thus indicating a long-distance destabilizing effect of the substitution on the Tpm coiled-coil structure. The E98K substitution did not noticeably affect Tpm's affinity for F-actin but significantly impaired Tpm's regulatory properties. It increased the Ca sensitivity of the sliding velocity of regulated thin filaments over cardiac myosin in an in vitro motility assay and caused an incomplete block of the thin filament sliding at low Ca concentrations. The incomplete motility block in the absence of Ca can be explained by the loosening of the Tpm interaction with troponin I (TnI), thus increasing Tpm mobility on the surface of an actin filament that partially unlocks the myosin binding sites. This hypothesis is supported by the molecular dynamics (MD) simulation that showed that the E98 Tpm residue is involved in hydrogen bonding with the C-terminal part of TnI. Thus, the results allowed us to explain the mechanism by which the E98K Tpm mutation impairs sarcomeric function and myocardial relaxation.

摘要

我们在编码心脏原肌球蛋白 1.1 同工型(Tpm1.1)的基因中发现了一个新的遗传变异 c.292G > A(p.E98K),该变异存在于一位表现为复杂心肌病伴传导功能障碍和缓慢进行性神经肌肉受累的先证者中。为了了解该突变如何损害心脏功能的分子机制,我们制备了携带 E98K 取代的重组 Tpm1.1,并研究了这种取代如何影响 Tpm1.1 分子的结构及其功能特性。结果表明,Tpm 分子 N 端的 E98K 取代显著破坏了 Tpm 的 C 端部分,从而表明取代对 Tpm 卷曲螺旋结构具有长程去稳定作用。E98K 取代对 Tpm 与 F-肌动蛋白的亲和力没有明显影响,但显著损害了 Tpm 的调节特性。它增加了在体外运动分析中调节的薄丝在心脏肌球蛋白上的滑动速度的 Ca 敏感性,并在低 Ca 浓度下导致薄丝滑动不完全阻滞。在没有 Ca 的情况下不完全的运动阻滞可以通过 Tpm 与肌钙蛋白 I(TnI)的相互作用的松解来解释,从而增加了 Tpm 在肌动蛋白丝表面上的移动性,这部分解锁了肌球蛋白结合位点。这一假设得到了分子动力学(MD)模拟的支持,该模拟表明 E98 Tpm 残基与 TnI 的 C 端部分形成氢键。因此,结果使我们能够解释 E98K Tpm 突变如何损害肌节功能和心肌松弛的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8770/10419091/77fa468c5f7d/ijms-24-12359-g001.jpg

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