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福司可林可诱导牛小梁网细胞中的肌球蛋白轻链去磷酸化。

Forskolin induces myosin light chain dephosphorylation in bovine trabecular meshwork cells.

作者信息

Ramachandran Charanya, Satpathy Minati, Mehta Dolly, Srinivas Sangly P

机构信息

School of Optometry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Curr Eye Res. 2008 Feb;33(2):169-76. doi: 10.1080/02713680701837067.

Abstract

PURPOSE

Enhanced contractility of the actin cytoskeleton in trabecular meshwork (TM) cells is implicated in increased resistance to aqueous humor outflow. In this study, we have investigated effects of forskolin, which is known to elevate cAMP and also enhance aqueous humor outflow, on myosin light chain (MLC) phosphorylation, a biochemical marker of actin contractility.

METHODS

Experiments were performed using cultured bovine TM cells. Phosphorylated MLC (pMLC), expressed as the % of untreated cells, was assessed by urea-glycerol gel electrophoresis and Western blotting. RhoA activity was determined by affinity precipitation of RhoA-GTP to RhoA binding domain of an effector of RhoA. Intracellular cAMP levels were measured by ELISA.

RESULTS

Exposure to LPA (lysophosphatidic acid) led to increased MLC phosphorylation (LPA: pMLC=133%) and activation of RhoA. These responses of LPA were suppressed by co-treatment with forskolin (LPA+forskolin: pMLC=88%). Similarly, ET-1 and nocodazole-induced MLC phosphorylation (ET-1: pMLC=145%; nocodazole: pMLC=145%) as well as RhoA activation were suppressed by co-treatment with forskolin (ET-1+forskolin: pMLC=99%; nocodazole+forskolin: pMLC=107%). Exposure to forskolin alone led to MLC dephosphorylation (pMLC=68%). Forskolin alone led to a 4-fold increase in cAMP levels. This increase was not affected when co-treated with LPA or ET-1.

CONCLUSIONS

Forskolin prevents MLC phosphorylation induced by LPA, ET-1, and nocodazole through inhibition of RhoA-Rho kinase axis. MLC dephosphorylation and consequent relaxation of actin cytoskeleton in TM cells presumably underlies the increased outflow facility reported in response to forskolin.

摘要

目的

小梁网(TM)细胞中肌动蛋白细胞骨架收缩性增强与房水流出阻力增加有关。在本研究中,我们研究了已知能升高环磷酸腺苷(cAMP)并增强房水流出的福斯可林对肌球蛋白轻链(MLC)磷酸化的影响,MLC磷酸化是肌动蛋白收缩性的生化标志物。

方法

使用培养的牛TM细胞进行实验。通过尿素-甘油凝胶电泳和蛋白质印迹法评估磷酸化MLC(pMLC),以未处理细胞的百分比表示。通过将RhoA-GTP亲和沉淀到RhoA效应器的RhoA结合域来测定RhoA活性。通过酶联免疫吸附测定法测量细胞内cAMP水平。

结果

暴露于溶血磷脂酸(LPA)导致MLC磷酸化增加(LPA:pMLC = 133%)和RhoA激活。LPA的这些反应被与福斯可林共同处理所抑制(LPA + 福斯可林:pMLC = 88%)。同样,内皮素-1(ET-1)和诺考达唑诱导的MLC磷酸化(ET-1:pMLC = 145%;诺考达唑:pMLC = 145%)以及RhoA激活被与福斯可林共同处理所抑制(ET-1 + 福斯可林:pMLC = 99%;诺考达唑 + 福斯可林:pMLC = 107%)。单独暴露于福斯可林导致MLC去磷酸化(pMLC = 68%)。单独使用福斯可林导致cAMP水平增加4倍。与LPA或ET-1共同处理时,这种增加不受影响。

结论

福斯可林通过抑制RhoA-Rho激酶轴来阻止由LPA、ET-1和诺考达唑诱导的MLC磷酸化。TM细胞中MLC去磷酸化以及随之而来的肌动蛋白细胞骨架松弛可能是福斯可林引起房水流出增加的基础。

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