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Mechanisms of Frank-Starling law of the heart and stretch activation in striated muscles may have a common molecular origin.心肌的 Frank-Starling 定律和横纹肌牵张激活的机制可能具有共同的分子起源。
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Hypertrophic cardiomyopathy associated E22K mutation in myosin regulatory light chain decreases calcium-activated tension and stiffness and reduces myofilament Ca sensitivity.致心律失常性右室心肌病相关肌球蛋白调节轻链 E22K 突变降低钙激活张力和刚性,并降低肌球蛋白丝钙敏感性。
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Ablation of the N terminus of cardiac essential light chain promotes the super-relaxed state of myosin and counteracts hypercontractility in hypertrophic cardiomyopathy mutant mice.心脏必需轻链 N 端的消融促进肌球蛋白的超松弛状态,并拮抗肥厚型心肌病突变小鼠的过度收缩性。
FEBS J. 2020 Sep;287(18):3989-4004. doi: 10.1111/febs.15243. Epub 2020 Feb 25.

本文引用的文献

1
Regulatory light chain phosphorylation and N-terminal extension increase cross-bridge binding and power output in Drosophila at in vivo myofilament lattice spacing.调节轻链磷酸化和 N 端延伸增加了在体内肌丝晶格间距下果蝇横桥结合和功率输出。
Biophys J. 2011 Apr 6;100(7):1737-46. doi: 10.1016/j.bpj.2011.02.028.
2
Enhanced active cross-bridges during diastole: molecular pathogenesis of tropomyosin's HCM mutations.增强的舒张期活性交叉桥:原肌球蛋白 HCM 突变的分子发病机制。
Biophys J. 2011 Feb 16;100(4):1014-23. doi: 10.1016/j.bpj.2011.01.001.
3
The role of tropomyosin isoforms and phosphorylation in force generation in thin-filament reconstituted bovine cardiac muscle fibres.肌球蛋白轻链磷酸化在肌球蛋白纤维滑行中的作用。
J Muscle Res Cell Motil. 2010 Aug;31(2):93-109. doi: 10.1007/s10974-010-9213-x. Epub 2010 Jun 18.
4
Differential roles of regulatory light chain and myosin binding protein-C phosphorylations in the modulation of cardiac force development.调节轻链和肌球蛋白结合蛋白-C 磷酸化在心脏力量发展调节中的差异作用。
J Physiol. 2010 Mar 15;588(Pt 6):981-93. doi: 10.1113/jphysiol.2009.183897. Epub 2010 Feb 1.
5
Prevalence of sarcomere protein gene mutations in preadolescent children with hypertrophic cardiomyopathy.肥厚型心肌病青春期前儿童肌节蛋白基因突变的患病率
Circ Cardiovasc Genet. 2009 Oct;2(5):436-41. doi: 10.1161/CIRCGENETICS.108.821314. Epub 2009 Jul 16.
6
Cardiomyopathy mutations reveal variable region of myosin converter as major element of cross-bridge compliance.心肌病突变揭示肌球蛋白转换器可变区是横桥柔韧性的主要因素。
Biophys J. 2009 Aug 5;97(3):806-24. doi: 10.1016/j.bpj.2009.05.023.
7
Phosphorylation and the N-terminal extension of the regulatory light chain help orient and align the myosin heads in Drosophila flight muscle.磷酸化作用以及调节性轻链的N端延伸有助于在果蝇飞行肌中使肌球蛋白头部定向和排列。
J Struct Biol. 2009 Nov;168(2):240-9. doi: 10.1016/j.jsb.2009.07.020. Epub 2009 Jul 25.
8
Removal of the cardiac myosin regulatory light chain increases isometric force production.去除心肌肌球蛋白调节轻链可增加等长力的产生。
FASEB J. 2009 Oct;23(10):3571-80. doi: 10.1096/fj.08-126672. Epub 2009 May 26.
9
The role of the N-terminus of the myosin essential light chain in cardiac muscle contraction.肌球蛋白必需轻链N端在心肌收缩中的作用。
J Mol Biol. 2009 Apr 3;387(3):706-25. doi: 10.1016/j.jmb.2009.02.006. Epub 2009 Feb 11.
10
Orientation of the essential light chain region of myosin in relaxed, active, and rigor muscle.肌球蛋白必需轻链区域在松弛、活跃和僵直肌肉中的取向。
Biophys J. 2008 Oct;95(8):3882-91. doi: 10.1529/biophysj.108.131508. Epub 2008 Jul 11.

肌球蛋白必需轻链在心肌收缩中的结构和功能方面。

Structural and functional aspects of the myosin essential light chain in cardiac muscle contraction.

机构信息

Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, 1600 NW 10th Ave., Miami, FL 33136, USA.

出版信息

FASEB J. 2011 Dec;25(12):4394-405. doi: 10.1096/fj.11-191973. Epub 2011 Sep 1.

DOI:10.1096/fj.11-191973
PMID:21885653
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3236635/
Abstract

The myosin essential light chain (ELC) is a structural component of the actomyosin cross-bridge, but its function is poorly understood, especially the role of the cardiac specific N-terminal extension in modulating actomyosin interaction. Here, we generated transgenic (Tg) mice expressing the A57G (alanine to glycine) mutation in the cardiac ELC known to cause familial hypertrophic cardiomyopathy (FHC). The function of the ELC N-terminal extension was investigated with the Tg-Δ43 mouse model, whose myocardium expresses a truncated ELC. Low-angle X-ray diffraction studies on papillary muscle fibers in rigor revealed a decreased interfilament spacing (≈ 1.5 nm) and no alterations in cross-bridge mass distribution in Tg-A57G mice compared to Tg-WT, expressing the full-length nonmutated ELC. The truncation mutation showed a 1.3-fold increase in I(1,1)/I(1,0), indicating a shift of cross-bridge mass from the thick filament backbone toward the thin filaments. Mechanical studies demonstrated increased stiffness in Tg-A57G muscle fibers compared to Tg-WT or Tg-Δ43. The equilibrium constant for the cross-bridge force generation step was smallest in Tg-Δ43. These results support an important role for the N-terminal ELC extension in prepositioning the cross-bridge for optimal force production. Subtle changes in the ELC sequence were sufficient to alter cross-bridge properties and lead to pathological phenotypes.

摘要

肌球蛋白必需轻链 (ELC) 是肌动球蛋白横桥的结构组成部分,但它的功能尚未完全了解,尤其是心脏特异性 N 端延伸在调节肌动球蛋白相互作用中的作用。在这里,我们生成了表达已知导致家族性肥厚型心肌病 (FHC) 的心脏 ELC A57G (丙氨酸到甘氨酸) 突变的转基因 (Tg) 小鼠。使用 Tg-Δ43 小鼠模型研究了 ELC N 端延伸的功能,其心肌表达截断的 ELC。在强直状态下对乳头肌纤维进行的低角度 X 射线衍射研究表明,与表达全长非突变 ELC 的 Tg-WT 相比,Tg-A57G 小鼠的肌丝间间距减小(≈1.5nm),且横桥质量分布没有改变。截断突变导致 I(1,1)/I(1,0) 增加了 1.3 倍,表明横桥质量从粗肌丝主干向细肌丝转移。力学研究表明,与 Tg-WT 或 Tg-Δ43 相比,Tg-A57G 肌纤维的刚性增加。在 Tg-Δ43 中,横桥力产生步骤的平衡常数最小。这些结果支持 ELC N 端延伸在预定位横桥以产生最佳力方面的重要作用。ELC 序列的细微变化足以改变横桥性质并导致病理性表型。