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磷酸化对平滑肌重酶解肌球蛋白X ADP与肌动蛋白结合的影响。

Effect of phosphorylation on the binding of smooth muscle heavy meromyosin X ADP to actin.

作者信息

Greene L E, Sellers J R

出版信息

J Biol Chem. 1987 Mar 25;262(9):4177-81.

PMID:2951383
Abstract

Relaxation of both smooth and skeletal muscles appears to be caused primarily by inhibition of the step associated with Pi release in the actomyosin ATPase cycle, rather than by a block in the binding of the myosin X ATP and myosin X ADP X Pi complexes to actin. In skeletal muscle, troponin-tropomyosin not only causes marked inhibition of Pi release, but it also markedly inhibits the binding of myosin subfragment-1 X ADP to actin, raising the possibility that the two phenomena are coupled in some way. In the present study we determined whether phosphorylation of smooth muscle heavy meromyosin (HMM) also affects both the binding of HMM X ADP to actin and the Pi release step. This was done by having phosphorylated and unphosphorylated HMM X ADP compete for sites on F-actin. At mu = 30 mM, phosphorylation increased the affinity of the HMM molecule for actin about 12-fold and at mu = 170 mM, there was less than a 3-fold increase in the affinity of HMM. If phosphorylation affects the binding of each head of HMM to the same extent, then phosphorylation caused about a 4- and 2-fold increase in the affinity of each head of HMM for actin at mu = 30 and 170 mM, respectively. In contrast, at both ionic strengths, phosphorylation caused more than 100-fold actin activation of the ATPase activity of smooth muscle HMM. Therefore, the marked activation of Pi release in the acto X HMM ATPase cycle upon phosphorylation of HMM is not accompanied by a comparable increase in the affinity of HMM X ADP for actin. We have also found that phosphorylation increases by only 4-fold the rate of Pi release from HMM alone. These results suggest that in smooth muscle, phosphorylation accelerates the step associated with the release of Pi both in the forward and the reverse direction without correspondingly affecting the binding of myosin X ADP to actin.

摘要

平滑肌和骨骼肌的舒张似乎主要是由于抑制了肌动球蛋白ATP酶循环中与磷酸根(Pi)释放相关的步骤,而不是由于肌球蛋白X ATP和肌球蛋白X ADP X Pi复合物与肌动蛋白结合受阻。在骨骼肌中,肌钙蛋白-原肌球蛋白不仅显著抑制Pi释放,还显著抑制肌球蛋白亚片段-1 X ADP与肌动蛋白的结合,这增加了两种现象在某种程度上相互关联的可能性。在本研究中,我们确定平滑肌重酶解肌球蛋白(HMM)的磷酸化是否也会影响HMM X ADP与肌动蛋白的结合以及Pi释放步骤。这是通过使磷酸化和未磷酸化的HMM X ADP竞争F-肌动蛋白上的位点来实现的。在μ = 30 mM时,磷酸化使HMM分子对肌动蛋白的亲和力增加约12倍,而在μ = 170 mM时,HMM的亲和力增加不到3倍。如果磷酸化对HMM每个头部的结合影响程度相同,那么在μ = 30 mM和170 mM时,磷酸化分别使HMM每个头部对肌动蛋白的亲和力增加约4倍和2倍。相比之下,在两种离子强度下,磷酸化使平滑肌HMM的ATP酶活性的肌动蛋白激活超过100倍。因此,HMM磷酸化后肌动蛋白X HMM ATP酶循环中Pi释放的显著激活并没有伴随着HMM X ADP对肌动蛋白亲和力的相应增加。我们还发现,磷酸化仅使单独的HMM释放Pi的速率增加4倍。这些结果表明,在平滑肌中,磷酸化在正向和反向方向上加速了与Pi释放相关的步骤,而没有相应地影响肌球蛋白X ADP与肌动蛋白的结合。

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