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首页> 外文期刊>Bulletin of experimental biology and medicine >Submolecular Mechanisms Underlying in Vitro and in Vivo Effect of Cardiac Glycosides on Contractile Activity of Myocardial Myofibrils during Heart Failure
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Submolecular Mechanisms Underlying in Vitro and in Vivo Effect of Cardiac Glycosides on Contractile Activity of Myocardial Myofibrils during Heart Failure

机译:心力衰竭期间糖苷对心肌肌原纤维收缩活性的体外和体内亚分子机制

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摘要

The development of severe heart failure associated with toxicoallergic myocarditis is accompanied by profound structural and conformational changes in the outer domain of actin (major protein in a thin filament of cardiomyocyte sarcomere). These changes were revealed in subdomains 1 (Cys374 and CyslO) and 2 (Lys61 and Tyr69). Structural and conformational changes in the monomer and protomer of the actin thread during heart failure were energetically forbidden. Variations in the distance between amino acid residues exceeded 0.26 run. They were partly or completely reversible in vivo under the influence of cardiotropic drug refracterin with high antihypoxic activity, as well as in vitro after treatment with digitalis preparations optimizing the concentration of ATP.
机译:与毒性过敏性心肌炎相关的严重心力衰竭的发展伴随着肌动蛋白(心肌细胞小肌细丝中的主要蛋白质)外域的深刻结构和构象变化。这些改变在亚域1(Cys374和Cys10)和2(Lys61和Tyr69)中揭示。大力禁止心力衰竭期间肌动蛋白丝的单体和前体的结构和构象变化。氨基酸残基之间的距离变化超过0.26nm。它们在具有高抗缺氧活性的抗心肌病药物折射素的影响下,以及在用洋地黄制剂处理后优化ATP浓度的体外,在体内部分或完全可逆。

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