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Micromechanical Thermal Assays of Ca2+-Regulated Thin-Filament Function and Modulation by Hypertrophic Cardiomyopathy Mutants of Human Cardiac Troponin

机译:Ca2 +调节细丝功能和人心肌肌钙蛋白肥大型心肌病突变体调控的微机械热分析

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Microfabricated thermoelectric controllers can be employed to investigate mechanisms underlying myosin-driven sliding of Ca2+-regulated actin and disease-associated mutations in myofilament proteins. Specifically, we examined actin filament sliding—with or without human cardiac troponin (Tn) andα-tropomyosin (Tm)—propelled by rabbit skeletal heavy meromyosin, when temperature was varied continuously over a wide range (~20–63C°). At the upper end of this temperature range, reversible dysregulation of thin filaments occurred at pCa 9 and 5; actomyosin function was unaffected. Tn-Tm enhanced sliding speed at pCa 5 and increased a transition temperature (Tt) between a high activation energy (Ea) but low temperature regime and a lowEabut high temperature regime. This was modulated by factors that alter cross-bridge number and kinetics. Three familial hypertrophic cardiomyopathy (FHC) mutations, cTnI R145G, cTnI K206Q, and cTnT R278C, cause dysregulation at temperatures~5–8C°lower; the latter two increased speed at pCa 5 at all temperatures.
机译:可以使用微制造的热电控制器来研究肌球蛋白驱动的Ca2 +调节肌动蛋白的滑行以及肌丝蛋白中与疾病相关的突变的机制。具体而言,当温度在宽范围内(约20-63°C)连续变化时,我们检查了由骨骼肌重肌球蛋白推动的肌动蛋白丝滑动(有或没有人心肌肌钙蛋白(Tn)和α-肌原球蛋白(Tm))。在此温度范围的上限,pCa 9和5处发生细丝的可逆失调;而放线菌素功能不受影响。 Tn-Tm增强了pCa 5处的滑动速度,并提高了高活化能(Ea)但处于低温状态和低Eabut高温状态之间的转变温度(Tt)。这是由改变跨桥数量和动力学的因素调节的。 cTnI R145G,cTnI K206Q和cTnT R278C这三个家族性肥厚性心肌病(FHC)突变会在温度降低约5-8°C时引起失调。在所有温度下,后两者在pCa 5下的速度均增加。

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