Selective interferon-alpha/beta effects on platelet-derived growth factor-stimulated processes in quiescent BALB/c-3T3 fibroblasts.

I Tamm, T Kikuchi, D Kreutter, W J Pledger, L M Pfeffer
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引用次数: 5

Abstract

Interferon-alpha/beta (IFN-alpha/beta) suppresses cell cycle activation by platelet-derived growth factor (PDGF) as well as the induction of the 31-kD (pI) and the 35-kD (pII) proteins in density-arrested BALB/c-3T3 cells. We report that elevation of [Ca2+]i by ionomycin induces the synthesis of the 31-kD protein, but not that of the 35-kD protein. Since IFN blocks the PDGF-induced elevation of [Ca2+]i, these results suggest that IFN treatment may suppress pI induction by impairing this PDGF-activated signal transduction pathway. In contrast, because ionomycin did not induce the 35-kD protein, the suppression by IFN of PDGF-induced pII appears to be mediated via a pathway distinct from that operating in the suppression of pI. In BALB/c-3T3 cells, IFN-alpha/beta did not itself affect the turnover or de novo synthesis of inositol phospholipids and the cellular content of diacylglycerol, nor did IFN block the enhancement of these parameters by PDGF.

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选择性干扰素- α / β对静止BALB/c-3T3成纤维细胞血小板衍生生长因子刺激过程的影响
干扰素- α / β (ifn - α / β)抑制血小板衍生生长因子(PDGF)激活细胞周期,以及在密度阻滞的BALB/c-3T3细胞中诱导31-kD (pI)和35-kD (pII)蛋白。我们报道了离子霉素升高[Ca2+]i诱导了31-kD蛋白的合成,而不是35-kD蛋白的合成。由于IFN阻断了pdgf诱导的[Ca2+]i的升高,这些结果表明IFN治疗可能通过损害pdgf激活的信号转导途径来抑制pI的诱导。相反,由于离子霉素没有诱导35-kD蛋白,因此IFN对pdgf诱导的pII的抑制似乎是通过与抑制pI不同的途径介导的。在BALB/c-3T3细胞中,IFN- α / β本身不影响肌醇磷脂的周转或重新合成以及二酰基甘油的细胞含量,IFN也不阻断PDGF对这些参数的增强。
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