Dong J M, Leung T, Manser E, Lim L
Glaxo-IMCB Group, Institute of Molecular and Cell Biology, 30 Medical Drive, Singapore 117609.
J Biol Chem. 1998 Aug 28;273(35):22554-62. doi: 10.1074/jbc.273.35.22554.
Dramatic transient changes resulting in a stellate morphology are induced in many cell types on treatment with agents that enhance intracellular cAMP levels. Thrombin fully protects cells from this inductive effect of cAMP through the thrombin receptor. The protective effect of thrombin was shown to be Rho-dependent. Clostridium botulinum C3 exoenzyme, which inactivates RhoA functions, abolished the ability of thrombin to protect cells from responding to increased cAMP levels. A constitutively activated RhoAV14 mutant protein also prevented cells from responding to cAMP. RhoA can be specifically phosphorylated at Ser-188 by the cAMP-activated protein kinase A (PKA). We demonstrate that RhoAV14A188, which cannot be phosphorylated by PKA in vitro, is more effective than RhoAV14 in preventing cells from responding to cAMP and in inducing actin stress fiber formation. This suggests that PKA phosphorylation of RhoA impairs its biological activity in vivo. ROKalpha, a RhoA-associated serine/threonine kinase can also prevent cells from responding to cAMP with shape changes. Phosphorylation of RhoA by PKA in vitro decreases the binding of RhoA to ROKalpha. These results indicate that RhoA and cAMP have antagonistic roles in regulating cellular morphology and suggest that cAMP-mediated down-regulation of RhoA binding to its effector ROKalpha may be involved in this antagonism.
在用能提高细胞内cAMP水平的试剂处理时,许多细胞类型会出现显著的瞬时变化,从而形成星状形态。凝血酶通过凝血酶受体完全保护细胞免受cAMP的这种诱导作用。凝血酶的保护作用被证明是Rho依赖性的。肉毒杆菌C3外毒素可使RhoA功能失活,它消除了凝血酶保护细胞免受cAMP水平升高影响的能力。一种组成型激活的RhoAV14突变蛋白也能阻止细胞对cAMP产生反应。RhoA可被cAMP激活的蛋白激酶A(PKA)在Ser-188位点特异性磷酸化。我们证明,在体外不能被PKA磷酸化的RhoAV14A188,在阻止细胞对cAMP产生反应以及诱导肌动蛋白应激纤维形成方面比RhoAV14更有效。这表明RhoA的PKA磷酸化在体内损害了其生物学活性。ROKalpha是一种与RhoA相关的丝氨酸/苏氨酸激酶,它也能阻止细胞因cAMP而发生形态变化。PKA在体外对RhoA的磷酸化降低了RhoA与ROKalpha的结合。这些结果表明,RhoA和cAMP在调节细胞形态方面具有拮抗作用,并提示cAMP介导的RhoA与其效应器ROKalpha结合的下调可能参与了这种拮抗作用。