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无头肌球蛋白分子在心肌细胞中的基因转移、表达和肌节掺入:肌丝运动功能储备的证据。

Gene transfer, expression, and sarcomeric incorporation of a headless myosin molecule in cardiac myocytes: evidence for a reserve in myofilament motor function.

机构信息

Integrative Biology and Physiology, University of Minnesota School of Medicine, 6-125 Jackson Hall, 321 Church St. E, Minneapolis, MN 55455, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2011 Feb;300(2):H574-82. doi: 10.1152/ajpheart.00786.2009. Epub 2010 Nov 26.

Abstract

The purpose of this study was to implement a living myocyte in vitro model system to test whether a motor domain-deleted headless myosin construct could be incorporated into the sarcomere and affect contractility. To this end we used gene transfer to express a "headless" myosin heavy chain (headless-MHC) in complement with the native full-length myosin motors in the cardiac sarcomere. An NH2-terminal Flag epitope was used for unique detection of the motor domain-deleted headless-MHC. Total MHC content (i.e., headless-MHC+endogenous MHC) remained constant, while expression of the headless-MHC in transduced myocytes increased from 24 to 72 h after gene transfer until values leveled off at 96 h after gene transfer, at which time the headless-MHC comprised ∼20% of total MHC. Moreover, immunofluorescence labeling and confocal imaging confirmed expression and demonstrated incorporation of the headless-MHC in the A band of the cardiac sarcomere. Functional measurements in intact myocytes showed that headless-MHC modestly reduced amplitude of dynamic twitch contractions compared with controls (P<0.05). In chemically permeabilized myocytes, maximum steady-state isometric force and the tension-pCa relationship were unaltered by the headless-MHC. These data suggest that headless-MHC can express to 20% of total myosin and incorporate into the sarcomere yet have modest to no effects on dynamic and steady-state contractile function. This would indicate a degree of functional tolerance in the sarcomere for nonfunctional myosin molecules.

摘要

本研究旨在构建一个在体心肌细胞模型,用以检测缺失头部的无功能肌球蛋白能否整合入肌节并影响收缩功能。为此,我们采用基因转染的方法,在心肌肌节中表达与内源性全长肌球蛋白相匹配的缺失头部的肌球蛋白重链(无头-MHC)。用 NH2 末端的 Flag 表位来特异性地检测缺失头部的肌球蛋白重链。总的 MHC 含量(即无头-MHC+内源性 MHC)保持不变,而转导的肌细胞中无头-MHC 的表达从基因转染后 24 小时增加到 72 小时,直到 96 小时后达到稳定水平,此时无头-MHC 占总 MHC 的约 20%。此外,免疫荧光标记和共聚焦成像证实了无头-MHC 在心肌肌节 A 带上的表达和整合。完整细胞的功能测量显示,无头-MHC 与对照组相比,动态收缩的幅度略有减小(P<0.05)。在化学透性化的肌细胞中,最大稳态等长收缩力和张力-pCa 关系不受无头-MHC 的影响。这些数据表明,无头-MHC 可以表达到总肌球蛋白的 20%,并整合到肌节中,但对动态和稳态收缩功能的影响较小或没有影响。这表明肌节对无功能肌球蛋白分子具有一定程度的功能耐受。

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