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肌钙蛋白 T 缺失突变 ΔK210 所致扩张型心肌病基因敲入小鼠模型左心室肌中的抑郁 Frank-Starling 机制。

Depressed Frank-Starling mechanism in the left ventricular muscle of the knock-in mouse model of dilated cardiomyopathy with troponin T deletion mutation ΔK210.

机构信息

Department of Cell Physiology, The Jikei University School of Medicine, Tokyo, Japan; Department of Cardiac Surgery, The Jikei University School of Medicine, Tokyo, Japan.

出版信息

J Mol Cell Cardiol. 2013 Oct;63:69-78. doi: 10.1016/j.yjmcc.2013.07.001. Epub 2013 Jul 14.

Abstract

It has been reported that the Frank-Starling mechanism is coordinately regulated in cardiac muscle via thin filament "on-off" equilibrium and titin-based lattice spacing changes. In the present study, we tested the hypothesis that the deletion mutation ΔK210 in the cardiac troponin T gene shifts the equilibrium toward the "off" state and accordingly attenuate the sarcomere length (SL) dependence of active force production, via reduced cross-bridge formation. Confocal imaging in isolated hearts revealed that the cardiomyocytes were enlarged, especially in the longitudinal direction, in ΔK210 hearts, with striation patterns similar to those in wild type (WT) hearts, suggesting that the number of sarcomeres is increased in cardiomyocytes but the sarcomere length remains unaltered. For analysis of the SL dependence of active force, skinned muscle preparations were obtained from the left ventricle of WT and knock-in (ΔK210) mice. An increase in SL from 1.90 to 2.20μm shifted the mid-point (pCa50) of the force-pCa curve leftward by 0.21pCa units in WT preparations. In ΔK210 muscles, Ca(2+) sensitivity was lower by ~0.37pCa units, and the SL-dependent shift of pCa50, i.e., ΔpCa50, was less pronounced (0.11pCa units), with and without protein kinase A treatment. The rate of active force redevelopment was lower in ΔK210 preparations than in WT preparations, showing blunted thin filament cooperative activation. An increase in thin filament cooperative activation upon an increase in the fraction of strongly bound cross-bridges by MgADP increased ΔpCa50 to ~0.21pCa units. The depressed Frank-Starling mechanism in ΔK210 hearts is the result of a reduction in thin filament cooperative activation.

摘要

据报道,心肌中的弗兰克-斯塔林机制通过细肌丝“开-关”平衡和肌联蛋白晶格间距变化进行协调调节。在本研究中,我们通过减少交联桥的形成来检验心肌肌钙蛋白 T 基因中 K210 缺失突变使平衡向“关”状态移动的假说,从而减弱主动力产生对肌节长度(SL)的依赖性。在分离的心脏中的共聚焦成像显示,ΔK210 心脏中的心肌细胞增大,特别是在纵向方向上,条纹图案类似于野生型(WT)心脏,表明心肌细胞中的肌节数量增加,但肌节长度保持不变。为了分析主动力对 SL 的依赖性,从 WT 和基因敲入(ΔK210)小鼠的左心室获得去皮肌肉标本。在 WT 标本中,SL 从 1.90 增加到 2.20μm 使力-pCa 曲线的中点(pCa50)向左移动约 0.21pCa 单位。在ΔK210 肌肉中,Ca(2+)敏感性降低约 0.37pCa 单位,并且无蛋白激酶 A 处理时,SL 依赖性的 pCa50 移位,即ΔpCa50,也不太明显(约 0.11pCa 单位)。ΔK210 标本中的主动力恢复率低于 WT 标本,表现为薄丝协同激活减弱。当通过增加强结合交联桥的分数来增加薄丝协同激活时,活性力的再发展速度增加,将ΔpCa50 增加到约 0.21pCa 单位。ΔK210 心脏中的降低的弗兰克-斯塔林机制是薄丝协同激活减少的结果。

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