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Interleukin-2-dependent phosphorylation of the retinoblastoma-susceptibility-gene product p110-115RB in human T-cells.

机译:视网膜母细胞瘤易感性基因产物p110-115RB在人T细胞中的白介素2依赖性磷酸化。

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摘要

The state of phosphorylation of the retinoblastoma-susceptibility gene product, p110-115RB, is thought to have fundamental importance in controlling the progression of the cell through the cell cycle. We have studied RB phosphorylation in human T-cells in the context of T-cell activation, stimulated by phytohaemagglutinin (PHA) and interleukin-2 (IL-2). We show that, of the signals associated with T-cell activation, only signals that directly lead to movement into S phase of the cell cycle are capable of stimulating RB phosphorylation. Cyclosporin A (CsA), a potent inhibitor of IL-2 synthesis and cellular proliferation, blocked RB phosphorylation, and this was recovered with exogenous IL-2, indicating a direct involvement of IL-2 in controlling RB phosphorylation. We found that PHA did not stimulate RB phosphorylation within 10 h of treatment, but IL-2 could effectively stimulate RB phosphorylation within 2 h, and this approached a maximum within 8-10 h of IL-2 treatment. Further, by using actinomycin D to inhibit new gene transcription following IL-2 stimulation, we found that early-cell-cycle phosphorylation of RB required IL-2-stimulated gene transcription. From these data we conclude that, in human T-cells, RB phosphorylation is not directly associated with T-cell receptor-mediated events, but requires the interaction of IL-2 and new gene transcription following IL-2 stimulation.
机译:视网膜母细胞瘤敏感性基因产物p110-115RB的磷酸化状态被认为在控制整个细胞周期中细胞的进程中具有根本的重要性。我们已经研究了由植物血凝素(PHA)和白介素2(IL-2)刺激的T细胞活化情况下人T细胞中的RB磷酸化。我们显示,在与T细胞活化相关的信号中,只有直接导致进入细胞周期S期的信号才能够刺激RB磷酸化。环孢菌素A(CsA)是IL-2合成和细胞增殖的有效抑制剂,阻断了RB磷酸化,并被外源IL-2回收,表明IL-2直接参与了RB磷酸化的控制。我们发现PHA在治疗10小时内并未刺激RB磷酸化,但IL-2可以在2小时内有效刺激RB磷酸化,并且在IL-2治疗8-10小时内达到最大值。此外,通过使用放线菌素D抑制IL-2刺激后的新基因转录,我们发现RB的早期细胞周期磷酸化需要IL-2刺激的基因转录。根据这些数据,我们得出结论,在人T细胞中,RB磷酸化并不直接与T细胞受体介导的事件相关,而是需要IL-2刺激后IL-2和新基因转录的相互作用。

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