Litosch Irene
Department of Molecular and Cellular Pharmacology, University of Miami School of Medicine, Miami, Florida 33101, USA.
Biochemistry. 2003 Feb 18;42(6):1618-23. doi: 10.1021/bi026414h.
Phosphatidic acid (PA) stimulates phospholipase C-beta(1) (PLC-beta(1)) activity and promotes G protein stimulation of PLC-beta(1) activity. The isoform dependence for PA regulation of PLC-beta activity as well as the role of PA in modulating regulation of PLC-beta activity by protein kinase C (PKC) and G protein subunits was determined. As compared to PLC-beta(1), the phospholipase C-beta(3) (PLC-beta(3)) isoform was less sensitive to PA, requiring greater than 15 mol % PA for stimulation. PLC-beta(3) bound weakly to PA. PKC had little effect on PA stimulation of PLC-beta(3) activity. PKC, however, inhibited PA stimulation of PLC-beta(1) activity through a mechanism dependent on the mol % PA. Stimulation by 7.5 mol % PA was completely inhibited by PKC. Increasing the PA and Ca(2+) concentration attenuated PKC inhibition. The binding of PLC-beta(1) to PA containing phospholipid vesicles was also reduced by PKC, in a manner dependent on the mol % PA. PA increased the stimulation of PLC-beta(1) activity by G alpha q but had little effect on the stimulation by beta gamma subunits. These results demonstrate that PA stimulation of PLC-beta activity is tightly regulated, suggesting the existence of a distinct PA binding region in PLC-beta(1). PA may be an important component of a receptor mediated signaling mechanism that determines PLC-beta(1) activation.
磷脂酸(PA)可刺激磷脂酶C-β1(PLC-β1)的活性,并促进G蛋白对PLC-β1活性的刺激作用。研究确定了PA对PLC-β活性调节的同工型依赖性,以及PA在调节蛋白激酶C(PKC)和G蛋白亚基对PLC-β活性调节中的作用。与PLC-β1相比,磷脂酶C-β3(PLC-β3)同工型对PA的敏感性较低,需要大于15摩尔%的PA才能产生刺激作用。PLC-β3与PA的结合较弱。PKC对PA刺激PLC-β3活性的影响较小。然而,PKC通过一种依赖于PA摩尔%的机制抑制PA对PLC-β1活性的刺激作用。7.5摩尔%的PA刺激作用被PKC完全抑制。增加PA和Ca2+的浓度可减弱PKC的抑制作用。PKC还以一种依赖于PA摩尔%的方式降低了PLC-β1与含PA磷脂囊泡的结合。PA增强了Gαq对PLC-β1活性的刺激作用,但对βγ亚基的刺激作用影响较小。这些结果表明,PA对PLC-β活性的刺激受到严格调控,提示PLC-β1中存在一个独特的PA结合区域。PA可能是决定PLC-β1激活的受体介导信号机制的重要组成部分。