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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >The latch-bridge hypothesis of smooth muscle contraction.
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The latch-bridge hypothesis of smooth muscle contraction.

机译:平滑肌收缩的闩锁桥假说。

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摘要

In contrast to striated muscle, both normalized force and shortening velocities are regulated functions of cross-bridge phosphorylation in smooth muscle. Physiologically this is manifested as relatively fast rates of contraction associated with transiently high levels of cross-bridge phosphorylation. In sustained contractions, Ca2+, cross-bridge phosphorylation, and ATP consumption rates fall, a phenomenon termed latch predicted the highly non-linear dependence of force on phosphorylation and a directly proportional dependence of shortening velocity on phosphorylation. This model hypothesized that (i) cross-bridge phosphorylation was obligatory for cross-bridge attachment, but also that (ii) dephosphorylation of an attached cross-bridge reduced its detachment rate. The resulting variety of cross-bridge cycles as predicted by the model could explain the observed dependencies of force and velocity on cross-bridge phosphorylation. New evidence supports modifications for more general applicability. First, myosin light chain phosphatase activity is regulated. Activation of myosin phosphatase is best demonstrated with inhibitory regulatory mechanisms acting via nitric oxide. The second modification of the model incorporates cooperativity in cross-bridge attachment to predict improved data on the dependence of force on phosphorylation. The molecular basis for cooperativity is unknown, but may involve thin filament proteins absent in striated muscle.
机译:与横纹肌相反,归一化力和缩短速度都是平滑肌中跨桥磷酸化的调节功能。在生理上,这表现为与瞬时高水平的跨桥磷酸化有关的相对较快的收缩率。在持续的收缩中,Ca 2+,跨桥磷酸化和ATP消耗速率下降,一种称为闩锁的现象预测了力对磷酸化的高度非线性依赖性以及缩短速度对磷酸化的直接比例依赖性。该模型假设(i)跨桥磷酸化对于跨桥连接是必须的,而且(ii)附着的跨桥的去磷酸化降低了其分离速率。由模型预测的所产生的各种跨桥循环可以解释观察到的力和速度对跨桥磷酸化的依赖性。新证据支持对更广泛适用性的修改。首先,调节肌球蛋白轻链磷酸酶的活性。肌球蛋白磷酸酶的激活最好通过一氧化氮的抑制性调节机制来证明。该模型的第二个修改在跨桥连接中包含了协同性,以预测依赖于力对磷酸化的改进数据。协同作用的分子基础尚不清楚,但可能涉及横纹肌中不存在的细丝蛋白。

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