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诱导型热休克蛋白70在辐射诱导的细胞死亡中的作用。

Role of inducible heat shock protein 70 in radiation-induced cell death.

作者信息

Lee S J, Choi S A, Lee K H, Chung H Y, Kim T H, Cho C K, Lee Y S

机构信息

Laboratory of Radiation Effect, Korea Cancer Center Hospital, Seoul.

出版信息

Cell Stress Chaperones. 2001 Jul;6(3):273-81. doi: 10.1379/1466-1268(2001)006<0273:roihsp>2.0.co;2.

Abstract

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.

摘要

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。

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Role of inducible heat shock protein 70 in radiation-induced cell death.诱导型热休克蛋白70在辐射诱导的细胞死亡中的作用。
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