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诱导型热休克蛋白70参与放射适应性反应。

Inducible heat-shock protein 70 is involved in the radioadaptive response.

作者信息

Park S H, Lee S J, Chung H Y, Kim T H, Cho C K, Yoo S Y, Lee Y S

机构信息

Laboratory of Radiation Effect, Korea Cancer Center Hospital, 215-4 Gongneung-Dong, Nowon-Ku, Seoul 139-706, Korea.

出版信息

Radiat Res. 2000 Mar;153(3):318-26. doi: 10.1667/0033-7587(2000)153[0318:ihspii]2.0.co;2.

Abstract

Park, S-H., Lee, S-J., Chung, H-Y., Kim, T-H., Cho, C-K., Yoo, S-Y. and Lee, Y-S. Inducible Heat-Shock Protein 70 Is Involved in the Radioadaptive Response. The thermoresistant (TR) clone of radiation-induced fibrosarcoma (RIF) cells showed an adaptive response, i.e. a reduced effect, after exposure to a higher challenging dose (4 Gy) when the priming dose (1 cGy) was given 4 or 7 h earlier, but RIF cells did not. Since inducible Hsp70 expression was different in cells of these two cell lines, the role of inducible Hsp70 in the adaptive response was examined. When inducible Hsp70 was transfected into RIF cells, the adaptive response was acquired. Transfection of inducible Hsp70 to NIH 3T3 mouse embryo cells also conferred radioresistance to the cells as assayed by clonogenic survival, [(3)H]thymidine incorporation, and an ELISA cell death detection kit. An increased tendency for the induction of an adaptive response was also observed. Interestingly, basal levels of Ca(2+)-dependent and independent Pkc activities were increased by transfection with inducible Hsp70 compared to those of control vector cells. Irradiation with gamma rays induced activation of Pkc within minutes in control vector cells, while transfection with inducible Hsp70 did not. Cellular redistribution to particulate fractions of Pkca, d and z after exposure gamma rays also was not detected. Furthermore, radioresistance by transfection with inducible Hsp70, as tested by clonogenic survival, disappeared after pretreatment with Pkc inhibitors, 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H7), prolonged treatment with 12-O-tetradecanoylphorbol-13-acetate (TPA), and GF109203X. Taken together, these data suggest that radioresistance inducible by Hsp70 is associated with an elevated level of Pkc activity.

摘要

朴,S-H.,李,S-J.,郑,H-Y.,金,T-H.,赵,C-K.,柳,S-Y.和李,Y-S. 诱导型热休克蛋白70参与辐射适应性反应。辐射诱导的纤维肉瘤(RIF)细胞的耐热(TR)克隆在提前4或7小时给予预照射剂量(1 cGy)后,再暴露于较高挑战剂量(4 Gy)时呈现适应性反应,即效应降低,但RIF细胞则不然。由于这两种细胞系的细胞中诱导型Hsp70表达不同,因此研究了诱导型Hsp70在适应性反应中的作用。将诱导型Hsp70转染到RIF细胞中后,细胞获得了适应性反应。通过克隆形成存活率、[³H]胸苷掺入以及ELISA细胞死亡检测试剂盒检测发现,将诱导型Hsp70转染到NIH 3T3小鼠胚胎细胞中也赋予了细胞抗辐射能力。还观察到诱导适应性反应的趋势增加。有趣的是,与对照载体细胞相比,转染诱导型Hsp70后,Ca²⁺依赖性和非依赖性Pkc活性的基础水平有所升高。在对照载体细胞中,γ射线照射几分钟内即可诱导Pkc活化,而转染诱导型Hsp70则不会。暴露于γ射线后,也未检测到Pkca、d和z向颗粒部分的细胞重新分布。此外,通过克隆形成存活率测试,用Pkc抑制剂1-(5-异喹啉磺酰基)-2-甲基哌嗪(H7)预处理、用12-O-十四酰佛波醇-13-乙酸酯(TPA)长时间处理以及GF109203X处理后,转染诱导型Hsp70所产生的抗辐射能力消失。综上所述,这些数据表明Hsp70诱导的抗辐射能力与Pkc活性水平升高有关。

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