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快速骨骼肌肌钙蛋白复合物对雷美替威作用机制的分子间和动态研究——治疗肌肉功能障碍。

Intermolecular And Dynamic Investigation of The Mechanism of Action of Reldesemtiv on Fast Skeletal Muscle Troponin Complex Toward the Treatment of Impaired Muscle Function.

机构信息

Molecular Bio-Computation and Drug Design Laboratory, School of Health Sciences, University of KwaZulu-Natal, Westville Campus, Durban, 4001, South Africa.

West African Centre for Computational Research and Innovation, Accra, Ghana.

出版信息

Protein J. 2023 Aug;42(4):263-275. doi: 10.1007/s10930-023-10091-y. Epub 2023 Mar 23.

Abstract

Muscle weakness as a secondary feature of attenuated neuronal input often leads to disability and sometimes death in patients with neurogenic neuromuscular diseases. These impaired muscle function has been observed in several diseases including amyotrophic lateral sclerosis, Charcot-Marie-Tooth, spinal muscular atrophy and Myasthenia gravis. This has spurred the search for small molecules which could activate fast skeletal muscle troponin complex as a means to increase muscle strength. Discovered small molecules have however been punctuated by off-target and side effects leading to the development of the second-generation small molecule, Reldesemtiv. In this study, we investigated the impact of Reldesemtiv binding to the fast skeletal troponin complex and the molecular determinants that condition the therapeutic prowess of Redesemtiv through computational techniques. It was revealed that Reldesemtiv binding possibly potentiates troponin C compacting characterized by reduced exposure to solvent molecules which could favor the slow release of calcium ions and the resultant sensitization of the subunit to calcium. These conformational changes were underscored by conventional and carbon hydrogen bonds, pi-alkyl, pi-sulfur and halogen interactions between Reldesemtiv the binding site residues. Arg113 (-3.96 kcal/mol), Met116 (-2.23 kcal/mol), Val114 (-1.28 kcal/mol) and Met121 (-0.63 kcal/mol) of the switch region of the inhibitory subunit were among the residues that contributed the most to the total free binding energy of Reldesemtiv highlighting their importance. These findings present useful insights which could lay the foundation for the development of fast skeletal muscle small molecule activators with high specificity and potency.

摘要

肌肉无力作为神经源性神经肌肉疾病患者减弱神经元输入的次要特征,常导致残疾,有时甚至死亡。几种疾病中都观察到了这种受损的肌肉功能,包括肌萎缩侧索硬化症、Charcot-Marie-Tooth 病、脊髓性肌萎缩症和重症肌无力。这促使人们寻找能够激活快速骨骼肌肌钙蛋白复合物的小分子,作为增加肌肉力量的一种手段。然而,已发现的小分子由于脱靶和副作用而受到限制,从而导致第二代小分子 Reldesemtiv 的开发。在这项研究中,我们通过计算技术研究了 Reldesemtiv 与快速骨骼肌肌钙蛋白复合物结合的影响,以及决定 Reldesemtiv 治疗功效的分子决定因素。结果表明,Reldesemtiv 的结合可能增强肌钙蛋白 C 的紧凑化,其特征是暴露于溶剂分子的减少,这可能有利于钙离子的缓慢释放,并使亚基对钙离子的敏感性增加。这些构象变化由常规和碳氢键、pi-烷基、pi-硫和卤键相互作用来强调,这些相互作用存在于 Reldesemtiv 与结合位点残基之间。抑制亚基开关区的残基 Arg113(-3.96 kcal/mol)、Met116(-2.23 kcal/mol)、Val114(-1.28 kcal/mol)和 Met121(-0.63 kcal/mol)对 Reldesemtiv 的总自由结合能贡献最大,突出了它们的重要性。这些发现提供了有用的见解,为开发具有高特异性和效力的快速骨骼肌小分子激活剂奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7903/10352438/5cbe2d8da2c8/10930_2023_10091_Fig1_HTML.jpg

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