Institute of Physiology II, University of Muenster, Germany.
FEBS J. 2019 Jun;286(12):2240-2260. doi: 10.1111/febs.14854. Epub 2019 Apr 29.
Titin is a giant elastic protein expressed in the contractile units of striated muscle cells, including the sarcomeres of cardiomyocytes. The last decade has seen enormous progress in our understanding of how titin molecular elasticity is modulated in a dynamic manner to help cardiac sarcomeres adjust to the varying hemodynamic demands on the heart. Crucial events mediating the rapid modulation of cardiac titin stiffness are post-translational modifications (PTMs) of titin. In this review, we first recollect what is known from earlier and recent work on the molecular mechanisms of titin extensibility and force generation. The main goal then is to provide a comprehensive overview of current insight into the relationship between titin PTMs and cardiomyocyte stiffness, notably the effect of oxidation and phosphorylation of titin spring segments on titin stiffness. A synopsis is given of which type of oxidative titin modification can cause which effect on titin stiffness. A large part of the review then covers the mechanically relevant phosphorylation sites in titin, their location along the elastic segment, and the protein kinases and phosphatases known to target these sites. We also include a detailed coverage of the complex changes in phosphorylation at specific titin residues, which have been reported in both animal models of heart disease and in human heart failure, and their correlation with titin-based stiffness alterations. Knowledge of the relationship between titin PTMs and titin elasticity can be exploited in the search for therapeutic approaches aimed at softening the pathologically stiffened myocardium in heart failure patients.
肌联蛋白是一种巨型弹性蛋白,存在于横纹肌细胞的收缩单位中,包括心肌细胞的肌节。在过去的十年中,我们对肌联蛋白分子弹性如何以动态方式进行调节以帮助心肌肌节适应心脏不断变化的血液动力需求有了巨大的认识进展。介导心肌联蛋白硬度快速调节的关键事件是肌联蛋白的翻译后修饰(PTMs)。在这篇综述中,我们首先回顾了早期和最近关于肌联蛋白伸展性和产生力的分子机制的工作中已知的内容。然后,主要目标是全面概述目前对肌联蛋白 PTMs 与心肌细胞硬度之间关系的了解,特别是肌联蛋白弹簧段的氧化和磷酸化对肌联蛋白硬度的影响。概述了哪种类型的氧化肌联蛋白修饰会对肌联蛋白硬度产生哪种影响。然后综述的很大一部分涵盖了肌联蛋白中机械相关的磷酸化位点,它们在弹性段上的位置,以及已知针对这些位点的蛋白激酶和磷酸酶。我们还详细介绍了在心脏病动物模型和人类心力衰竭中报道的特定肌联蛋白残基磷酸化的复杂变化,以及它们与基于肌联蛋白的硬度改变的相关性。了解肌联蛋白 PTMs 与肌联蛋白弹性之间的关系,可以在寻找治疗方法方面发挥作用,旨在使心力衰竭患者病理性僵硬的心肌软化。