Begum N, Duddy N, Sandu O, Reinzie J, Ragolia L
The Diabetes Research Laboratory, Winthrop University Hospital, Mineola, New York 11501, USA.
Mol Endocrinol. 2000 Sep;14(9):1365-76. doi: 10.1210/mend.14.9.0522.
In this study, we examined the molecular mechanism of myosin-bound protein phosphatase (MBP) regulation by insulin and evaluated the role of MBP in insulin-mediated vasorelaxation. Insulin rapidly stimulated MBP in confluent primary vascular smooth muscle cell (VSMC) cultures. In contrast, VSMCs isolated from diabetic and hypertensive rats exhibited impaired MBP activation by insulin. Insulin-mediated MBP activation was accompanied by a rapid time-dependent reduction in the phosphorylation state of the myosin-bound regulatory subunit (MBS) of MBP. The decrease observed in MBS phosphorylation was due to insulin-induced inhibition of Rho kinase activity. Insulin also prevented a thrombin-mediated increase in Rho kinase activation and abolished the thrombin-induced increase in MBS phosphorylation and MBP inactivation. These data are consistent with the notion that insulin inactivates Rho kinase and decreases MBS phosphorylation to activate MBP in VSMCs. Furthermore, treatment with synthetic inhibitors of phosphatidylinositol-3 kinase (PI3-kinase), nitric oxide synthase (NOS), and cyclic guanosine monophosphate (cGMP) all blocked insulin's effect on MBP activation. We conclude that insulin stimulates MBP via its regulatory subunit, MBS partly by inactivating Rho kinase and stimulating NO/cGMP signaling via PI3-kinase as part of a complex signaling network that controls 20-kDa myosin light chain (MLC20) phosphorylation and VSMC contraction.
在本研究中,我们研究了胰岛素对肌球蛋白结合蛋白磷酸酶(MBP)的调节分子机制,并评估了MBP在胰岛素介导的血管舒张中的作用。胰岛素可迅速刺激汇合的原代血管平滑肌细胞(VSMC)培养物中的MBP。相比之下,从糖尿病和高血压大鼠分离的VSMC对胰岛素介导的MBP激活受损。胰岛素介导的MBP激活伴随着MBP的肌球蛋白结合调节亚基(MBS)磷酸化状态迅速随时间而降低。观察到的MBS磷酸化降低是由于胰岛素诱导的Rho激酶活性抑制。胰岛素还可防止凝血酶介导的Rho激酶激活增加,并消除凝血酶诱导的MBS磷酸化增加和MBP失活。这些数据与胰岛素使Rho激酶失活并降低MBS磷酸化以激活VSMC中MBP的观点一致。此外,用磷脂酰肌醇-3激酶(PI3-激酶)、一氧化氮合酶(NOS)和环磷酸鸟苷(cGMP)的合成抑制剂处理均阻断了胰岛素对MBP激活的作用。我们得出结论,胰岛素通过其调节亚基MBS刺激MBP,部分是通过使Rho激酶失活并通过PI3-激酶刺激NO/cGMP信号传导,这是控制20 kDa肌球蛋白轻链(MLC20)磷酸化和VSMC收缩的复杂信号网络的一部分。