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首页> 外文期刊>Cardiovascular Research >Human essential myosin light chain isoforms revealed distinct myosin binding, sarcomeric sorting, and inotropic activity.
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Human essential myosin light chain isoforms revealed distinct myosin binding, sarcomeric sorting, and inotropic activity.

机译:人类必需的肌球蛋白轻链亚型显示出独特的肌球蛋白结合,肌节分选和正性肌力活动。

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摘要

AIMS: In this paper, we tested the hypothesis that different binding affinities of the C-terminus of human cardiac alkali (essential) myosin light chain (A1) isoforms to the IQ1 motif of the myosin lever arm provide a molecular basis for distinct sarcomeric sorting and inotropic activity. METHODS AND RESULTS: We employed circular dichroism and surface plasmon resonance spectroscopy to investigate structural properties, secondary structures, and protein-protein interactions of a recombinant head-rod fragments of rat cardiac beta-myosin heavy chain aa664-915 with alanine-mutated IQ2 domain (rbeta-MYH(664-915)IQ(ala4)) and A1 isoforms [human atrial (hALC1) and human ventricular (hVLC-1) light chains]. Double epitope-tagging competition was used to monitor the intracellular localization of exogenously introduced hALC-1 and hVLC-1 constructs in neonatal rat cardiomyocytes. Contractile functions of A1 isoforms were investigated by monitoring shortening and intracellular-free Ca(2+) (Fura-2) of adult rat cardiomyocytes infected with adenoviral (Ad) vectors using hALC-1 or beta-galactosidase as expression cassettes. hALC-1 bound more strongly (greater than three-fold lower K(D)) to rbeta-MYH(664-915) than did hVLC-1. Sorting specificity of A1 isoforms to sarcomeres of cardiomyocytes rose in the order hVLC-1 to hALC-1. Replacement of endogenous VLC-1 by hALC-1 in adult rat cardiomyocytes increased contractility while the systolic Ca(2+) signal remained unchanged. CONCLUSION: Intense myosin binding of hALC-1 provides a mechanism for preferential sarcomeric sorting and Ca(2+)-independent positive inotropic activity.
机译:目的:在本文中,我们测试了以下假设:人心脏碱(必需)肌球蛋白轻链(A1)同工型的C末端与肌球蛋白杠杆臂的IQ1基序的不同结合亲和力为分子分离肌节提供了分子基础和正性肌力活动。方法和结果:我们使用圆二色性和表面等离子体共振光谱研究了大鼠心脏β-肌球蛋白重链aa664-915与丙氨酸突变的IQ2结构域的重组头杆片段的结构特性,二级结构和蛋白质-蛋白质相互作用。 (rbeta-MYH(664-915)IQ(ala4))和A1亚型[人心房(hALC1)和人心室(hVLC-1)轻链]。使用双表位标记竞争来监测新生大鼠心肌细胞中外源引入的hALC-1和hVLC-1构建体的细胞内定位。通过监测使用hALC-1或β-半乳糖苷酶作为表达盒感染腺病毒(Ad)载体的成年大鼠心肌细胞的缩短和无胞内Ca(2+)(Fura-2),研究A1亚型的收缩功能。与hVLC-1相比,hALC-1与rbeta-MYH(664-915)的结合更牢固(比K(D)低三倍)。 A1亚型对心肌肉瘤的分类特异性以hVLC-1至hALC-1的顺序上升。 hALC-1在成年大鼠心肌细胞内源性VLC-1的替换增加了收缩力,而收缩期Ca(2+)信号保持不变。结论:hALC-1的强烈肌球蛋白结合提供了一种优先的肌节分选和Ca(2+)独立的正性肌力活性的机制。

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