Lee S J, Choi S A, Lee K H, Chung H Y, Kim T H, Cho C K, Lee Y S
Laboratory of Radiation Effect, Korea Cancer Center Hospital, Seoul.
Cell Stress Chaperones. 2001 Jul;6(3):273-81. doi: 10.1379/1466-1268(2001)006<0273:roihsp>2.0.co;2.
We previously demonstrated the protective effect of inducible heat shock protein 70 (Hsp70) against gamma radiation. Herein, we extend our studies on the possible role of Hsp70 to ionizing radiation-induced cell cycle regulation. The growth rate of inducible hsp70-transfected cells was 2-3 hours slower than that of control cells. Flow cytometric analysis of cells at G1 phase synchronized by serum starvation also showed the growth delay in the Hsp70-overexpressing cells. In addition, reduced cyclin D1 and Cdc2 levels and increased dephosphorylated phosphoretinoblastoma (pRb) were observed in inducible hsp70-transfected cells, which were probably responsible for the reduction of cell growth. To find out if inducible Hsp70-mediated growth delay affected radiation-induced cell cycle regulation, flow cytometric and molecular analyses of cell cycle regulatory proteins and their kinase were performed. The radiation-induced G2/M arrest was found to be inhibited by Hsp70 overexpression and reduced p21Waf induction and its kinase activity by radiation in the Hsp70-transfected cells. In addition, radiation-induced cyclin A or B1 expressions together with their kinase activities were also inhibited by inducible Hsp70, which represented reduced mitotic cell death. Indeed, hsp70 transfectants showed less induction of radiation-induced apoptosis. When treated with nocodazole, radiation-induced mitotic arrest was inhibited by inducible Hsp70. These results strongly suggested that inducible Hsp70 modified growth delay (increased G1 phase) and reduced G2/M phase arrest, subsequently resulting in inhibition of radiation-induced cell death.
我们之前证明了诱导型热休克蛋白70(Hsp70)对γ辐射具有保护作用。在此,我们将对Hsp70可能在电离辐射诱导的细胞周期调控中的作用研究进行拓展。诱导型hsp70转染细胞的生长速率比对照细胞慢2 - 3小时。对血清饥饿同步化至G1期的细胞进行流式细胞术分析,也显示出Hsp70过表达细胞的生长延迟。此外,在诱导型hsp70转染细胞中观察到细胞周期蛋白D1和Cdc2水平降低,去磷酸化视网膜母细胞瘤蛋白(pRb)增加,这可能是细胞生长减少的原因。为了确定诱导型Hsp70介导的生长延迟是否影响辐射诱导的细胞周期调控,我们对细胞周期调控蛋白及其激酶进行了流式细胞术和分子分析。发现Hsp70过表达抑制了辐射诱导的G2/M期阻滞,并且在Hsp70转染细胞中辐射诱导的p21Waf诱导及其激酶活性降低。此外,诱导型Hsp70还抑制了辐射诱导的细胞周期蛋白A或B1的表达及其激酶活性,这表明有丝分裂细胞死亡减少。实际上,hsp70转染细胞辐射诱导的凋亡诱导较少。用诺考达唑处理时,诱导型Hsp70抑制了辐射诱导的有丝分裂阻滞。这些结果强烈表明,诱导型Hsp70改变了生长延迟(增加G1期)并减少了G2/M期阻滞,随后导致辐射诱导的细胞死亡受到抑制。