Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, 1600 NW 10th Ave., Miami, FL 33136, USA.
FASEB J. 2011 Dec;25(12):4394-405. doi: 10.1096/fj.11-191973. Epub 2011 Sep 1.
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.
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。