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Molecular effects of the myosin activator omecamtiv mecarbil on contractile properties of skinned myocardium lacking cardiac myosin binding protein-C

机译:肌球蛋白活化剂omecamtiv mecarbil对缺乏心脏肌球蛋白结合蛋白-C的皮肤心肌收缩特性的分子影响

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摘要

Decreased expression of cardiac myosin binding protein-C (cMyBP-C) in the myocardium is thought to be a contributing factor to hypertrophic cardiomyopathy in humans, and the initial molecular defect is likely abnormal cross-bridge (XB) function which leads to impaired force generation, decreased contractile performance, and hypertrophy in vivo. The myosin activator omecamtiv mecarbil (OM) is a pharmacological drug that specifically targets the myosin XB and recent evidence suggests that OM induces a significant decrease in vitro motility velocity and an increase in the XB duty cycle. Thus, the molecular effects of OM maybe beneficial in improving contractile function in skinned myocardium lacking cMyBP-C because absence of cMyBP-C in the sarcomere accelerates XB kinetics and enhances XB turnover rate, which presumably reduces contractile efficiency. Therefore, parameters of XB function were measured in skinned myocardium lacking cMyBP-C prior to and following OM incubation. We measured ktr, the rate of force redevelopment as an index of XB transition from both the weakly- to strongly-bound state and from the strongly- to weakly-bound states and performed stretch activation experiments to measure the rates of XB detachment (krel) and XB recruitment (kdf) in detergent-skinned ventricular preparations isolated from hearts of wild-type (WT) and cMyBP-C knockout (KO) mice. Samples from donor human hearts were also used to assess the effects of OM in cardiac muscle expressing a slow β-myosin heavy chain (β-MHC). Incubation of skinned myocardium with OM produced large enhancements in steady-state force generation which were most pronounced at low levels of [Ca2+] activations, suggesting that OM cooperatively recruits additional XB’s into force generating states. Despite a large increase in steady-state force generation following OM incubation, parallel accelerations in XB kinetics as measured by ktr were not observed, and there was a significant OM-induced decrease in krel which was more pronounced in the KO skinned myocardium compared to WT skinned myocardium (58% in WT vs. 76% in KO at pCa 6.1), such that baseline differences in krel between KO and WT skinned myocardium were no longer apparent following OM-incubation. A significant decrease in the kdf was also observed following OM incubation in all groups, which may be related to the increase in the number of cooperatively recruited XB’s at low Ca2+-activations which slows the overall rate of force generation. Our results indicate that OM may be a useful pharmacological approach to normalize hypercontractile XB kinetics in myocardium with decreased cMyBP-C expression due to its molecular effects on XB behavior.
机译:心肌肌球蛋白结合蛋白-C(cMyBP-C)在心肌中的表达降低被认为是人类肥厚型心肌病的一个促成因素,最初的分子缺陷可能是异常的跨桥(XB)功能,导致力受损生成,收缩性能下降和体内肥大。肌球蛋白激活剂omecamtiv mecarbil(OM)是专门针对肌球蛋白XB的药理学药物,最近的证据表明,OM引起体外运动速度显着降低和XB占空比增加。因此,OM的分子效应可能有助于改善缺少cMyBP-C的皮肤心肌的收缩功能,因为肌小节中cMyBP-C的缺乏会加速XB动力学并提高XB周转率,从而可能降低收缩效率。因此,在OM温育之前和之后,在缺乏cMyBP-C的皮肤心肌中测量XB功能的参数。我们测量了ktr,即作为XB从弱结合状态到强结合状态以及从强结合状态到弱结合状态的XB过渡指数的力再发展速率,并进行了拉伸激活实验以测量XB脱离速率(krel)和从野生型(WT)和cMyBP-C基因敲除(KO)小鼠心脏分离的去污剂皮肤的心室制剂中的XB募集(kdf)。来自供体人心脏的样品也用于评估OM在表达慢速β-肌球蛋白重链(β-MHC)的心肌中的作用。将皮肤与OM一起孵育可使稳态力产生大大增强,这在[Ca 2 + ]激活水平较低时最为明显,这表明OM协同募集了更多XB进入力产生状态。尽管在OM孵育后稳态力产生显着增加,但未观察到通过ktr测量的XB动力学平行加速,并且与WT相比,OM诱导的rel明显减少,在KO皮层心肌中更为明显。皮的心肌(WT在pCa 6.1时为58%,而KO为76%),因此OM温育后,KO和WT皮的心肌之间的krel基线差异不再明显。在所有组中进行OM孵育后,还观察到kdf显着降低,这可能与低Ca 2 + 激活下协同募集的XB数量增加有关,这减慢了Kdf的总体发生率。力量的产生。我们的研究结果表明,OM可能是一种有用的药理学方法,可用于归因于其分子对XB行为的影响而降低cMyBP-C表达的心肌过度收缩XB动力学。

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