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小热休克蛋白提供的翻译热耐受性仅限于帽依赖性起始,并受到2-氨基嘌呤的抑制。

Translational thermotolerance provided by small heat shock proteins is limited to cap-dependent initiation and inhibited by 2-aminopurine.

作者信息

Doerwald Linda, Onnekink Carla, van Genesen Siebe T, de Jong Wilfried W, Lubsen Nicolette H

机构信息

Department of Biochemistry, Faculty of Science, University of Nijmegen, 6500HB Nijmegen, The Netherlands.

出版信息

J Biol Chem. 2003 Dec 12;278(50):49743-50. doi: 10.1074/jbc.M302914200. Epub 2003 Sep 30.

Abstract

Heat shock results in inhibition of general protein synthesis. In thermotolerant cells, protein synthesis is still rapidly inhibited by heat stress, but protein synthesis recovers faster than in naive heat-shocked cells, a phenomenon known as translational thermotolerance. Here we investigate the effect of overexpressing a single heat shock protein on cap-dependent and cap-independent initiation of translation during recovery from a heat shock. When overexpressing alphaB-crystallin or Hsp27, cap-dependent initiation of translation was protected but no effect was seen on cap-independent initiation of translation. When Hsp70 was overexpressed however, both cap-dependent and -independent translation were protected. This finding indicates a difference in the mechanism of protection mediated by small or large heat shock proteins. Phosphorylation of alphaB-crystallin and Hsp27 is known to significantly decrease their chaperone activity; therefore, we tested phosphorylation mutants of these proteins in this system. AlphaB-crystallin needs to be in its non-phosphorylated state to give protection, whereas phosphorylated Hsp27 is more potent in protection than the unphosphorylatable form. This indicates that chaperone activity is not a prerequisite for protection of translation by small heat shock proteins after heat shock. Furthermore, we show that in the presence of 2-aminopurine, an inhibitor of kinases, among which is double-stranded RNA-activated kinase, the protective effect of overexpressing alphaB-crystallin is abolished. The synthesis of the endogenous Hsps induced by the heat shock to test for thermotolerance is also blocked by 2-aminopurine. Most likely the protective effect of alphaB-crystallin requires synthesis of the endogenous heat shock proteins. Translational thermotolerance would then be a co-operative effect of different heat shock proteins.

摘要

热休克会导致总体蛋白质合成受到抑制。在耐热细胞中,蛋白质合成仍会因热应激而迅速受到抑制,但与未经历过热休克的幼稚细胞相比,其蛋白质合成恢复得更快,这一现象被称为翻译耐热性。在此,我们研究了在热休克恢复过程中,过表达单一热休克蛋白对帽依赖性和帽非依赖性翻译起始的影响。当过表达αB-晶状体蛋白或Hsp27时,帽依赖性翻译起始受到保护,但帽非依赖性翻译起始未受影响。然而,当过表达Hsp70时,帽依赖性和帽非依赖性翻译均受到保护。这一发现表明小热休克蛋白或大热休克蛋白介导的保护机制存在差异。已知αB-晶状体蛋白和Hsp27的磷酸化会显著降低它们的伴侣活性;因此,我们在该系统中测试了这些蛋白的磷酸化突变体。αB-晶状体蛋白需要处于非磷酸化状态才能发挥保护作用,而磷酸化的Hsp27在保护作用上比不可磷酸化形式更强。这表明伴侣活性并非热休克后小热休克蛋白保护翻译的必要条件。此外,我们发现,在存在2-氨基嘌呤(一种激酶抑制剂,其中包括双链RNA激活激酶)的情况下,过表达αB-晶状体蛋白的保护作用被消除。热休克诱导的用于测试耐热性的内源性热休克蛋白的合成也被2-氨基嘌呤阻断。很可能αB-晶状体蛋白的保护作用需要内源性热休克蛋白的合成。翻译耐热性可能是不同热休克蛋白的协同作用。

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