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肌节长度依赖性对表达顺应性原肌球蛋白的心肌钙调蛋白调节的影响。

Sarcomere length-dependent effects on Ca-troponin regulation in myocardium expressing compliant titin.

机构信息

Gene and Linda Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA.

Department of Cellular and Molecular Medicine, University of Arizona, Tucson, AZ.

出版信息

J Gen Physiol. 2019 Jan 7;151(1):30-41. doi: 10.1085/jgp.201812218. Epub 2018 Dec 6.

Abstract

Cardiac performance is tightly regulated at the cardiomyocyte level by sarcomere length, such that increases in sarcomere length lead to sharply enhanced force generation at the same Ca concentration. Length-dependent activation of myofilaments involves dynamic and complex interactions between a multitude of thick- and thin-filament components. Among these components, troponin, myosin, and the giant protein titin are likely to be key players, but the mechanism by which these proteins are functionally linked has been elusive. Here, we investigate this link in the mouse myocardium using in situ FRET techniques. Our objective was to monitor how length-dependent Ca-induced conformational changes in the N domain of cardiac troponin C (cTnC) are modulated by myosin-actin cross-bridge (XB) interactions and increased titin compliance. We reconstitute FRET donor- and acceptor-modified cTnC(13C/51C)AEDANS-DDPM into chemically skinned myocardial fibers from wild-type and RBM20-deletion mice. The Ca-induced conformational changes in cTnC are quantified and characterized using time-resolved FRET measurements as XB state and sarcomere length are varied. The RBM20-deficient mouse expresses a more compliant N2BA titin isoform, leading to reduced passive tension in the myocardium. This provides a molecular tool to investigate how altered titin-based passive tension affects Ca-troponin regulation in response to mechanical stretch. In wild-type myocardium, we observe a direct association of sarcomere length-dependent enhancement of troponin regulation with both Ca activation and strongly bound XB states. In comparison, measurements from titin RBM20-deficient animals show blunted sarcomere length-dependent effects. These results suggest that titin-based passive tension contributes to sarcomere length-dependent Ca-troponin regulation. We also conclude that strong XB binding plays an important role in linking the modulatory effect of titin compliance to Ca-troponin regulation of the myocardium.

摘要

心肌细胞的肌节长度对心脏功能起着精细的调节作用,肌节长度的增加会导致在相同的 Ca 浓度下力的产生急剧增强。肌球蛋白丝和肌动蛋白丝之间的相互作用,以及肌钙蛋白、肌球蛋白和巨大蛋白 titin 等多种厚、薄丝组件之间的动态和复杂相互作用,共同参与调节肌节长度依赖的肌丝激活。在这些组件中,肌钙蛋白、肌球蛋白和巨大蛋白 titin 可能是关键参与者,但这些蛋白如何在功能上相互联系的机制仍难以捉摸。在这里,我们使用原位 FRET 技术研究了小鼠心肌中的这种联系。我们的目标是监测 Ca 诱导的心肌肌钙蛋白 C(cTnC)N 结构域构象变化如何受到肌球蛋白-肌动蛋白交联(XB)相互作用和增加的 titin 顺应性的调节。我们将经过化学剥皮的野生型和 RBM20 缺失小鼠的心肌纤维中的 FRET 供体和受体修饰的 cTnC(13C/51C)AEDANS-DDPM 重新构成。通过时间分辨 FRET 测量来量化和表征 cTnC 的 Ca 诱导构象变化,同时改变 XB 状态和肌节长度。RBM20 缺失的小鼠表达一种顺应性更高的 N2BA titin 同工型,导致心肌的被动张力降低。这为研究改变的 titin 基被动张力如何影响机械拉伸时 Ca-肌钙蛋白的调节提供了分子工具。在野生型心肌中,我们观察到肌节长度依赖性增强的肌钙蛋白调节与 Ca 激活和紧密结合的 XB 状态之间存在直接关联。相比之下,来自 titin RBM20 缺失动物的测量结果显示肌节长度依赖性效应减弱。这些结果表明 titin 基被动张力有助于肌节长度依赖性 Ca-肌钙蛋白调节。我们还得出结论,强 XB 结合在将 titin 顺应性的调节效应与心肌 Ca-肌钙蛋白调节联系起来方面起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73bc/6314383/07b62ff44203/JGP_201812218_Fig1.jpg

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