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Regulation of survival gene hsp70

机译:生存基因hsp70的调控

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Rapid expression of the survival gene, inducible heat shock protein 70 (hsp70), is critical for mounting cytoprotection against severe cellular stress, like elevated temperature. Hsp70 protein chaperones the refolding of heat-denatured peptides to minimize proteolytic degradation as a part of an eukaryotically conserved phenomenon referred to as the heat shock response. The physiologic stress associated with exercise, which can include elevated temperature, mechanical damage, hypoxia, lowered pH, and reactive oxygen species generation, may promote protein unfolding, leading to hsp70 gene expression in skeletal myofibers. Although the pre-transcriptional activation of hsp70 gene expression has been thoroughly reviewed, discussion of downstream hsp70 gene regulation is less extensive. The purpose of this brief review was to examine all levels of hsp70 gene regulation in response to heat stress and exercise with a special focus on skeletal myofibers where data are available. In general, while heat stress represses bulk gene expression, hsp70 mRNA expression is enhanced. Post-transcriptionally, intronless hsp70 mRNA circumvents a host of decay pathways, as well as heat stress-repressed pre-mRNA splicing and nuclear export. Pre-translationally, hsp70 mRNA is excluded from stress granules and preferentially translated during heat stress-repressed global cap-dependent translation. Post-translationally, nascent Hsp70 protein is thermodynamically stable at elevated temperatures, allowing for the commencement of chaperoning activity early after synthesis to attenuate the heat shock response and protect against subsequent injury. This review demonstrates that hsp70 mRNA expression is closely coupled with functional protein translation.
机译:存活基因(可诱导的热休克蛋白70(hsp70))的快速表达对于抵抗严重的细胞应激(例如高温)的细胞保护至关重要。 Hsp70蛋白质伴侣可以使热变性肽重新折叠,以最大程度地减少蛋白水解降解,这是真核保守现象(称为热激反应)的一部分。与运动有关的生理应激可能包括温度升高,机械损伤,缺氧,pH降低和活性氧生成,可能会促进蛋白质的解折叠,从而导致骨骼肌纤维中的hsp70基因表达。尽管已经对hsp70基因表达的转录前激活进行了全面的回顾,但是对下游hsp70基因调控的讨论却很少。这篇简短综述的目的是研究针对热应激和运动的hsp70基因调控的所有水平,并特别关注可获得数据的骨骼肌纤维。通常,虽然热应激会抑制大量基因的表达,但hsp70 mRNA的表达却会增强。转录后,无内含子的hsp70 mRNA绕过了许多衰变途径,以及受热应激抑制的前mRNA剪接和核输出。翻译前,hsp70 mRNA从应激颗粒中排除,并在热应激抑制的整体帽依赖性翻译过程中优先翻译。翻译后,新生的Hsp70蛋白在高温下是热力学稳定的,可以在合成后的早期就开始伴随伴侣活动,从而减弱热休克反应并保护其免受后续伤害。这项审查表明,hsp70 mRNA表达与功能性蛋白翻译密切相关。

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