Hypertrophic cardiomyopathy (HCM) is a genetic disease of the heart characterized by thickening of the left ventricle (LV), hypercontractility, and impaired relaxation. HCM is caused primarily by heritable mutations in sarcomeric proteins, such as β myosin heavy chain. Until recently, medications in clinical use for HCM did not directly target the underlying contractile changes in the sarcomere. Here, we investigate a novel small molecule, RLC-1, identified in a bovine cardiac myofibril high-throughput screen. RLC-1 is highly dependent on the presence of a regulatory light chain to bind to cardiac myosin and modulate its ATPase activity. In demembranated rat LV trabeculae, RLC-1 decreased maximal Ca2+-activated force and Ca2+ sensitivity of force, while it increased the submaximal rate constant for tension redevelopment. In myofibrils isolated from rat LV, both maximal and submaximal Ca2+-activated force are reduced by nearly 50%. Additionally, the fast and slow phases of relaxation were approximately twice as fast as DMSO controls, and the duration of the slow phase was shorter. Structurally, x-ray diffraction studies showed that RLC-1 moved myosin heads away from the thick filament backbone and decreased the order of myosin heads, which is different from other myosin inhibitors. In intact trabeculae and isolated cardiomyocytes, RLC-1 treatment resulted in decreased peak twitch magnitude and faster activation and relaxation kinetics. In conclusion, RLC-1 accelerated kinetics and decreased force production in the demembranated tissue, intact tissue, and intact whole cells, resulting in a smaller cardiac twitch, which could improve the underlying contractile changes associated with HCM.
Mechanisms of a novel regulatory light chain-dependent cardiac myosin inhibitor.
一种新型的调节性轻链依赖性心肌肌球蛋白抑制剂的作用机制
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作者:Kooiker Kristina, Gan Qing-Fen, Yu Ming, Sa Na, Mohran Saffie, Cheng Yuanhua, Flint Galina, Neys Stephanie, Gao Chengqian, Nissen Devin, McMillen Tim, Asencio Anthony, Ma Weikang, Irving Thomas C, Moussavi-Harami Farid, Regnier Michael
| 期刊: | Journal of General Physiology | 影响因子: | 2.900 |
| 时间: | 2024 | 起止号: | 2024 Oct 7; 156(10):e202313503 |
| doi: | 10.1085/jgp.202313503 | 研究方向: | 炎症/感染 |
| 疾病类型: | 心肌炎 | ||
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