The retinoblastoma protein-associated cell cycle arrest in S-phase under moderate hypoxia is disrupted in cells expressing HPV18 E7 oncoprotein

被引:36
作者
Åmellem, O [1 ]
Sandvik, JA
Stokke, T
Pettersen, EO
机构
[1] Norwegian Radium Hosp, Dept Cell Biol, Inst Canc Res, N-0310 Oslo, Norway
[2] Norwegian Radium Hosp, Dept Biophys, Inst Canc Res, N-0310 Oslo, Norway
关键词
hypoxia; cell cycle; retinoblastoma protein; cell cycle arrest; cell cycle regulation; pyrimidine de novo synthesis; DNA synthesis; HPV18; E7; protein; human papillomavirus 18;
D O I
10.1038/bjc.1998.143
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
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 G(1) 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 G(2) 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 G(2) and mitosis seems independent of their functional pRB status. The p21(WAF1/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 p16(INK4a) 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.
引用
收藏
页码:862 / 872
页数:11
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