首页> 外文期刊>Journal of cellular biochemistry. >Functional receptor for platelet-derived growth factor in rat embryonic heart-derived myocytes: role of sequestered Ca2+ stores in receptor signaling and antagonism by arginine vasopressin.
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Functional receptor for platelet-derived growth factor in rat embryonic heart-derived myocytes: role of sequestered Ca2+ stores in receptor signaling and antagonism by arginine vasopressin.

机译:大鼠胚胎心脏源性心肌细胞中血小板源性生长因子的功能性受体:精氨酸加压素在受体信号传导和拮抗作用中螯合的Ca2 +储存的作用。

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Platelet-derived growth factor (PDGF) is established to function importantly in the growth, development, and function of most cardiovascular tissues. However, evidence that the factor participates directly in the growth and development of the mammalian myocardium is lacking. H9c2 rat embryonic ventricular myocytes were found to respond to PDGF-BB with a rapid mobilization of cell-associated Ca2+ and increased rates of protein synthesis, followed by markedly increased rates of DNA synthesis. PDGF acted as a full mitogen for these myocytes. Evidence is provided that documents the expression of classical PDGF-beta, but not PDGF-alpha, receptors in H9c2 cells. Scatchard analysis revealed the presence of 44,000 beta-receptors per myocyte. Cell shortening and clustering of plasmalemmal beta-receptors occurred within 30 min of exposure to PDGF-BB. Treatment was also associated with a transient increase in the rate of synthesis of GRP78/BiP, consistent with a transitory release of Ca2+ from the sarcoplasmic/endoplasmic reticulum [S(E)R]. Increased rates of protein synthesis at early times of PDGF treatment were additive with those occurring in response to arginine vasopressin, indicating different mechanisms of translational upregulation by these agents. The mitogenic effects of PDGF were delayed by vasopressin, which causes H9c2 myocytes to undergo hypertrophy while promoting the persistent depletion of S(E)R Ca2+ stores. In the presence of PDGF, vasopressin did not induce hypertrophy. As compared to untreated myocytes, DNA synthesis in PDGF-treated myocytes was optimized at lower extracellular Ca2+ concentrations and was significantly less sensitive to inhibition by ionomycin. H9c2 cells appear to provide a useful embryonic cardiomyocyte model in which to examine both PDGF-activated proliferative and vasopressin-activated hypertrophic events and the importance of transient vs. sustained Ca2+ release in these events. Copyright 2002 Wiley-Liss, Inc.
机译:建立血小板衍生的生长因子(PDGF)在大多数心血管组织的生长,发育和功能中起重要作用。但是,缺乏该因子直接参与哺乳动物心肌生长和发育的证据。发现H9c2大鼠胚胎心室肌细胞对PDGF-BB有反应,细胞相关的Ca2 +快速动员,蛋白质合成速率增加,随后DNA合成速率显着提高。 PDGF充当这些肌细胞的完整促分裂原。提供的证据证明了H9c2细胞中经典PDGF-beta(而非PDGF-alpha)受体的表达。斯卡查德分析显示每个心肌细胞中存在44,000个β受体。暴露于PDGF-BB的30分钟内,细胞质和浆膜β受体聚集。治疗还与GRP78 / BiP合成速率的瞬时增加相关,这与从肌浆/内质网[S(E)R]暂时释放Ca2 +一致。在PDGF处理的早期,蛋白质合成速率的增加与对精氨酸升压素的应答所产生的速率相加,表明这些试剂的翻译上调机制不同。血管加压素延迟了PDGF的促有丝分裂作用,这导致H9c2心肌细胞发生肥大,同时促进S(E)R Ca2 +存储的持续消耗。在PDGF存在下,加压素未诱导肥大。与未处理的心肌细胞相比,PDGF处理的心肌细胞中的DNA合成在较低的细胞外Ca2 +浓度下得到了优化,并且对离子霉素的抑制作用明显不那么敏感。 H9c2细胞似乎提供了有用的胚胎心肌细胞模型,可在其中检查PDGF激活的增生和血管加压素激活的肥大事件,以及在这些事件中瞬时与持续Ca2 +释放的重要性。版权所有2002 Wiley-Liss,Inc.

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