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Myosin Regulatory Light Chain Phosphorylation and Strain Modulate Adenosine Diphosphate Release from Smooth Muscle Myosin

机译:肌球蛋白调节轻链磷酸化和应变调节平滑肌肌球蛋白释放的腺苷二磷酸。

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摘要

The effects of myosin regulatory light chain (RLC) phosphorylation and strain on adenosine diphosphate (ADP) release from cross-bridges in phasic (rabbit bladder (Rbl)) and tonic (femoral artery (Rfa)) smooth muscle were determined by monitoring fluorescence transients of the novel ADP analog, 3′-deac-eda-ADP (deac-edaADP). Fluorescence transients reporting release of 3′-deac-eda-ADP were significantly faster in phasic (0.57 ± 0.06 s−1) than tonic (0.29 ± 0.03 s−1) smooth muscles. Thiophosphorylation of regulatory light chains increased and strain decreased the release rate ∼twofold. The calculated (k−ADP/k+ADP) dissociation constant, Kd of unstrained, unphosphorylated cross-bridges for ADP was 0.6 μM for rabbit bladder and 0.3 μM for femoral artery. The rates of ADP release from rigor bridges and reported values of Pi release (corresponding to the steady-state adenosine triphosphatase (ATPase) rate of actomyosin (AM)) from cross-bridges during a maintained isometric contraction are similar, indicating that the ADP-release step or an isomerization preceding it may be limiting the adenosine triphosphatase rate. We conclude that the strain- and dephosphorylation-dependent high affinity for and slow ADP release from smooth muscle myosin prolongs the fraction of the duty cycle occupied by strongly bound actomyosin.ADP state(s) and contributes to the high economy of force.
机译:通过监测荧光瞬变来确定肌球蛋白调节性轻链(RLC)磷酸化和应变对相位(兔膀胱(Rbl))和强直(股动脉(Rfa))平滑肌中跨桥释放的二磷酸腺苷(ADP)的影响。新型ADP类似物3'-deac-eda-ADP(deac-edaADP)的示意图。报告3'-deac-eda-ADP释放的荧光瞬态在阶段性(0.57±0.06 s -1 )明显快于补剂(0.29±0.03 s -1 )平滑的肌肉。调节性轻链的硫代磷酸化增加,菌株的释放速率降低约两倍。计算的(k-ADP / k + ADP)解离常数,ADP的未应变,未磷酸化的跨桥的Kd,对于兔膀胱为0.6μM,对于股动脉为0.3μM。在维持等轴测收缩期间,跨桥的ADP从严格桥的释放速率和Pi释放的报告值(对应于肌动球蛋白(AM)的稳态三磷酸腺苷酶(ATPase)的稳态速率)相似,表明ADP-释放步骤或之前的异构化可能限制了腺苷三磷酸酶的速率。我们得出结论,对平滑肌肌球蛋白的依赖于应变和去磷酸化的高亲和力和缓慢的ADP释放可延长强结合的肌动球蛋白ADP状态所占的工作周期,并有助于实现高经济效益。

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