Begum Najma
Diabetes Research Laboratory, Winthrop University Hospital, Mineola, NY 11501, USA.
Front Biosci. 2003 Sep 1;8:s796-804. doi: 10.2741/1146.
An abnormal vasodilation is a major defect observed in the arteries of diabetic and hypertensive individuals. Myosin bound phosphatase (MBP) dephosphorylates myosin light chains which play a dominant role in vascular smooth muscle (VSM) contraction. Using two distinct approaches, we have demonstrated that insulin rapidly stimulates MBP and simultaneously inhibits RhoA/Rho kinase signaling via the nitric oxide (NO)/cGMP signaling pathway. Insulin activates MBP by decreasing Thr695 phosphorylation of myosin-bound subunit (MBS) via two different but cross-talking signaling pathways. Firstly, insulin inactivates Rho kinase by blocking RhoA activation and translocation to the membrane fraction via increased cGMP/cGK-1( mediated RhoA phosphorylation and decreased geranylgeranylation. Secondly, insulin induces iNOS expression via PI3-kinase signaling leading to generation of NO/cGMP which activates MBP via cGK-1( mediated inhibition of MBSThr695 phosphorylation via Rho kinase inactivation. MBP activation prevents agonist induced MLC20 phosphorylation as well as VSMC contraction. VSMCs isolated from SHR and diabetic rats exhibit elevations in Rho kinase, which increases MBS Thr695 phosphorylation and inhibits MBP. The defects appear to be at the level of PI3-kinase activation due to impaired insulin-induced IRS-1 tyrosine phosphorylation because of increased association of active Rho kinase with the IRS-1 leading to increased IRS-1 serine phosphorylation, which interrupts with downstream insulin signaling.
异常的血管舒张是在糖尿病和高血压患者动脉中观察到的主要缺陷。肌球蛋白结合磷酸酶(MBP)使肌球蛋白轻链去磷酸化,而肌球蛋白轻链在血管平滑肌(VSM)收缩中起主导作用。通过两种不同的方法,我们已经证明胰岛素通过一氧化氮(NO)/环鸟苷酸(cGMP)信号通路迅速刺激MBP,同时抑制RhoA/Rho激酶信号传导。胰岛素通过两条不同但相互作用的信号通路降低肌球蛋白结合亚基(MBS)的Thr695磷酸化来激活MBP。首先,胰岛素通过增加cGMP/cGK-1介导的RhoA磷酸化并减少香叶基香叶基化,阻断RhoA激活和向膜部分的转位,从而使Rho激酶失活。其次,胰岛素通过PI3激酶信号传导诱导诱导型一氧化氮合酶(iNOS)表达,导致生成NO/cGMP,其通过cGK-1介导的Rho激酶失活抑制MBSThr695磷酸化来激活MBP。MBP激活可防止激动剂诱导的肌球蛋白轻链20(MLC20)磷酸化以及VSMC收缩。从自发性高血压大鼠(SHR)和糖尿病大鼠分离的VSMC中,Rho激酶升高,这增加了MBS Thr695磷酸化并抑制MBP。由于活性Rho激酶与胰岛素受体底物-1(IRS-1)的关联增加,导致IRS-1丝氨酸磷酸化增加,从而中断下游胰岛素信号传导,导致胰岛素诱导的IRS-1酪氨酸磷酸化受损,这些缺陷似乎出现在PI3激酶激活水平。