Inui H, Kitami Y, Tani M, Kondo T, Inagami T
Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232.
J Biol Chem. 1994 Dec 2;269(48):30546-52.
Cultured vascular smooth muscle cells (VSMC) from spontaneously hypertensive rats express both alpha and beta isoforms of the platelet-derived growth factor (PDGF) receptors at high levels (100,000 and 240,000 sites/cell, respectively). In this cell type, PDGF-BB elicited a mitogenic response; however, PDGF-AA increased only protein synthesis without activating DNA synthesis. Protein kinase C (PKC) was activated by PDGF-AA as well as PDGF-BB with concomitant translocation from cytosol to membrane fractions. However, the hypertrophic effect of PDGF-AA was not affected by depletion of cellular PKC, whereas the mitogenic action of PDGF-BB was partially attenuated by the depletion. Following incubation with PDGF-AA or -BB, phospholipase C-gamma 1 (PLC-gamma 1) and phosphatidylinositol 3-kinase were tyrosine phosphorylated; however, the phosphorylation of Ras-GTPase-activating protein was induced only by PDGF-BB. Both PDGF isoforms resulted in a prompt and transient increase in the level of 1,2-diacylglycerol (DAG), presumably through the action of PLC-gamma 1. After returning to basal levels, the rate of DAG synthesis steadily increased for at least 15 min due to activation of phosphatidylcholine-hydrolyzing phospholipase C (PC-PLC). Incubation with PDGF-BB-activated phospholipase D (PLD) in a PKC-dependent manner resulting in the formation of phosphatidic acid (PA). PA was also formed by the sequential reactions of PC-PLC and DAG kinase in the PDGF-BB-stimulated VSMC, and these sequential reactions were not affected by PKC depletion. In contrast, PDGF-AA stimulation did not result in increased PA synthesis as neither PLD nor DAG kinase activities were affected. PA may be a significant second messenger in the activation of DNA synthesis by PDGF-BB. These results indicate that signaling mechanisms of the PDGF-alpha and -beta receptors in VSMC are distinctly different in signal transduction in VSMC and that the alpha receptor promotes cellular hypertrophy (but not hyperplasia), whereas a mitogenic response is mediated only through the beta receptor.
来自自发性高血压大鼠的培养血管平滑肌细胞(VSMC)高水平表达血小板衍生生长因子(PDGF)受体的α和β两种亚型(分别为100,000和240,000个位点/细胞)。在这种细胞类型中,PDGF - BB引发有丝分裂反应;然而,PDGF - AA仅增加蛋白质合成而不激活DNA合成。蛋白激酶C(PKC)被PDGF - AA以及PDGF - BB激活,并伴随从胞质溶胶向膜组分的转位。然而,PDGF - AA的肥大作用不受细胞PKC耗竭的影响,而PDGF - BB的有丝分裂作用则因PKC耗竭而部分减弱。与PDGF - AA或 - BB孵育后,磷脂酶C - γ1(PLC - γ1)和磷脂酰肌醇3 -激酶发生酪氨酸磷酸化;然而,Ras - GTP酶激活蛋白的磷酸化仅由PDGF - BB诱导。两种PDGF亚型均导致1,2 - 二酰基甘油(DAG)水平迅速且短暂升高,推测是通过PLC - γ1的作用。在恢复到基础水平后,由于磷脂酰胆碱水解磷脂酶C(PC - PLC)的激活,DAG合成速率在至少15分钟内稳步增加。与PDGF - BB孵育以PKC依赖的方式激活磷脂酶D(PLD),导致磷脂酸(PA)的形成。在PDGF - BB刺激的VSMC中,PA也通过PC - PLC和DAG激酶的顺序反应形成,并且这些顺序反应不受PKC耗竭的影响。相比之下,PDGF - AA刺激不会导致PA合成增加,因为PLD和DAG激酶活性均未受到影响。PA可能是PDGF - BB激活DNA合成中的重要第二信使。这些结果表明,VSMC中PDGF - α和 - β受体的信号传导机制在VSMC的信号转导中明显不同,并且α受体促进细胞肥大(但不促进增生),而有丝分裂反应仅通过β受体介导。