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Role of the Giant Elastic Protein Titin in the Frank-Starling Mechanism of the Heart

机译:巨型弹性蛋白Titin在心脏的Frank-Starling机制中的作用

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摘要

Increased ventricular volume enhances the systolic performance, a phenomenon known as Frank-Starling's law of the heart. At its basis is the ability of cardiac muscle to produce increased active force in response to increased muscle length. Although numerous studies have been conducted to elucidate the molecular basis of length-dependent activation, the mechanism remains elusive. The giant protein titin (also known as connectin) is the third filament system in the sarcomere and is responsible for most passive stiffness of striated muscle in the physiological sarcomere length range. The force generated by titin is usually seen as passive and independent of active force generation. Recent findings, however, suggest that titin-based passive force modulates actin-myosin interaction, resulting in greater active force in response to stretch. In this short review, we discuss the molecular mechanisms of length-dependent activation, focusing on the possible role of titin in its regulation.
机译:心室容积的增加会增强心脏的收缩功能,这种现象被称为心脏弗兰克-史达琳定律。其基础是心肌响应增加的肌肉长度而产生增加的主动力的能力。尽管已经进行了许多研究来阐明长度依赖性激活的分子基础,但是该机制仍然难以捉摸。巨大蛋白滴定蛋白(也称为connectin)是肌节中的第三个细丝系统,负责生理性肌节长度范围内横纹肌的大部分被动僵硬。通常由泰丁产生的力是被动的,与主动力的产生无关。然而,最近的发现表明,基于肌动蛋白的被动力调节肌动蛋白-肌球蛋白的相互作用,导致响应于拉伸的主动力更大。在这篇简短的综述中,我们讨论了长度依赖性激活的分子机制,重点是titin在其调控中的可能作用。

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