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热耐受性发育和衰退过程中热休克蛋白的合成与降解

Synthesis and degradation of heat shock proteins during development and decay of thermotolerance.

作者信息

Landry J, Bernier D, Chrétien P, Nicole L M, Tanguay R M, Marceau N

出版信息

Cancer Res. 1982 Jun;42(6):2457-61.

PMID:7074623
Abstract

Morris hepatoma 7777 cells, heat conditioned at 43 degrees for 0.5 hr, become gradually thermoresistant during an incubation at 37 degrees as judged by their ability to form colonies following a second heat challenge. Pulse incorporation of [35S]methionine into proteins at various times after the conditioning treatment and subsequent fractionation of the proteins by polyacrylamide gel electrophoresis indicate that the gradual putative modifications occurring at the cellular level and leading to the thermotolerance state are accompanied by an elevated synthesis above the normal level of a small set of polypeptides with apparent molecular weights of 27,000, 65,000, 68,000, 70,000, 89,000, and 107,000. Both thermotolerance development and protein induction are completed after a 6- to 8-hr period. At the end of this period, thermotolerance is at its maximum level and heat shock protein synthesis is returned to normal. This acquired thermal resistance eventually disappears between 60 and 80 hr following conditioning treatment. In a parallel manner, the heat shock-induced proteins synthesized during the first 4 hr following the conditioning treatment are maintained in the cells at a high level for several hr but become undetectable by 82 hr. The results provide strong circumstantial evidence that heat shock proteins are involved in the acquisition, maintenance, and decay of thermotolerance.

摘要

莫里斯肝癌7777细胞在43摄氏度下热预处理0.5小时后,在37摄氏度孵育期间逐渐产生耐热性,这可通过二次热刺激后其形成集落的能力来判断。在预处理后不同时间将[35S]甲硫氨酸脉冲掺入蛋白质,并随后通过聚丙烯酰胺凝胶电泳对蛋白质进行分级分离,结果表明,在细胞水平上逐渐发生的、导致耐热状态的假定修饰伴随着一小部分表观分子量为27,000、65,000、68,000、70,000、89,000和107,000的多肽的合成高于正常水平。耐热性的发展和蛋白质的诱导在6至8小时后完成。在此阶段结束时,耐热性达到最高水平,热休克蛋白合成恢复正常。这种获得的热抗性最终在预处理后60至80小时之间消失。同样,在预处理后最初4小时内合成的热休克诱导蛋白在细胞中高水平维持数小时,但在82小时后变得无法检测到。这些结果提供了有力的间接证据,表明热休克蛋白参与了耐热性的获得、维持和衰退。

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