首页> 外文期刊>British Journal of Cancer >The retinoblastoma protein-associated cell cycle arrest in S-phase under moderate hypoxia is disrupted in cells expressing HPV18 E7 oncoprotein
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The retinoblastoma protein-associated cell cycle arrest in S-phase under moderate hypoxia is disrupted in cells expressing HPV18 E7 oncoprotein

机译:在表达HPV18 E7癌蛋白的细胞中,中度低氧下视网膜母细胞瘤蛋白相关的细胞周期停滞在S期

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We have studied the role of the oxygen-dependent pyrimidine metabolism in the regulation of cell cycle progression under moderate hypoxia in human cell lines containing functional (T-47D) or non-functional (NHIK 3025, SAOS-2) retinoblastoma gene product (pRB). Under aerobic conditions, pRB exerts its growth-regulatory effects during early G1 phase of the cell cycle, when all pRB present has been assumed to be in the underphosphorylated form and bound in the nucleus. We demonstrate that pRB is dephosphorylated and re-bound in the nucleus in approximately 90% of T-47D cells located in S and G2 phases under moderately hypoxic conditions. Under these conditions, no T-47D cells entered S-phase, and no progression through S-phase was observed. Progression of cells through G2 and mitosis seems independent of their functional pRB status. The p21WAF1/CIP1 protein level was significantly reduced by moderate hypoxia in p53-deficient T-47D cells, whereas p16(INK4a) was not expressed in these cells, suggesting that the hypoxia-induced cell cycle arrest is independent of these cyclin-dependent kinase inhibitors. The addition of pyrimidine deoxynucleosides did not release T-47D cells, containing mainly underphosphorylated pRB, from the cell cycle arrest induced by moderate hypoxia. However, NHIK 3025 cells, in which pRB is abrogated by expression of the HPV18 E7 oncoprotein, and SAOS-2 cells, which lack pRB expression, continued cell cycle progression under moderate hypoxia provided that excess pyrimidine deoxynucleosides were present. NHIK 3025 cells express high levels of p16INK4a under both aerobic and moderately hypoxic conditions, suggesting that the inhibitory function of p16(INK4a) would not be manifested in such pRB-deficient cells. Thus, pRB, a key member of the cell cycle checkpoint network, seems to play a major role by inducing growth arrest under moderate hypoxia, and it gradually overrides hypoxia-induced suppression of pyrimidine metabolism in the regulation of progression through S-phase under such conditions.
机译:我们已经研究了氧依赖性嘧啶代谢在中度低氧条件下在含有功能性(T-47D)或非功能性(NHIK 3025,SAOS-2)视网膜母细胞瘤基因产物(pRB)的人细胞系中调节细胞周期进程中的作用)。在有氧条件下,当假定所有存在的pRB均为磷酸化不足的形式并结合在细胞核中时,pRB在细胞周期的早期G1阶段发挥其生长调节作用。我们证明pRB被去磷酸化,并在中度低氧条件下位于S和G2期的T-47D细胞中约90%的细胞核中重新结合。在这些条件下,没有T-47D细胞进入S期,也没有观察到通过S期的进程。细胞通过G2和有丝分裂的进程似乎与它们的功能性pRB状态无关。在缺乏p53的T-47D细胞中,中度缺氧可显着降低p21WAF1 / CIP1蛋白水平,而在这些细胞中未表达p16(INK4a),这表明缺氧诱导的细胞周期停滞与这些细胞周期蛋白依赖性激酶无关抑制剂。嘧啶脱氧核苷的添加不会从中度缺氧诱导的细胞周期停滞中释放出T-47D细胞(主要包含磷酸化不足的pRB)。但是,NHIK 3025细胞(其中pRB被HPV18 E7癌蛋白的表达所废除)和SAOS-2细胞(缺乏pRB的表达)在中等缺氧条件下继续细胞周期进程,前提是存在过量的嘧啶脱氧核苷。 NHIK 3025细胞在有氧和中度低氧条件下均表达高水平的p16INK4a,这表明p16(INK4a)的抑制功能不会在这种pRB缺陷型细胞中表现出来。因此,pRB是细胞周期检查点网络的关键成员,似乎在中度低氧条件下通过诱导生长停滞而起主要作用,并且在这种情况下,pRB在通过S期的过程中逐渐抑制了低氧诱导的嘧啶代谢的抑制。条件。

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