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首页> 外文期刊>Experimental Gerontology >Proteasome inhibition increases HuR level, restores heat-inducible HSP72 expression and thermotolerance in WI-38 senescent human fibroblasts.
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Proteasome inhibition increases HuR level, restores heat-inducible HSP72 expression and thermotolerance in WI-38 senescent human fibroblasts.

机译:蛋白酶体抑制增加WI-38衰老的人类成纤维细胞中的HuR水平,恢复热诱导的HSP72表达和耐热性。

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摘要

At the end of their replicative potential in vitro, late passage WI-38 human diploid fibroblasts (HDF) have a low basal expression of heat shock protein 72 (HSP72) and an attenuated ability to induce it in response to heat shock. The transient exposure to the specific and reversible proteasome inhibitor MG132 during a mild heat shock induced late passage HDF to synthesize and accumulate high levels of HSP72. This HSP72 expression was long-lasting and appeared to result from both increased cytoplasmic levels and enhanced translation of HSP72 mRNA. The level of HuR, a stabilizing mRNA-binding protein, increased following the MG132 treatment. This result is consistent with the proposed role of HuR in assisting mRNA export to the cytoplasm and in antagonizing its degradation. Furthermore, the previous exposure of late passage HDF to a mild heat shock in the presence of MG132 protected these cells against the otherwise lethal effect of a subsequent severe heat shock. This acquisition of thermotolerance appeared to be correlated with the level of HSP72.
机译:在体外复制潜能结束时,晚期传代的WI-38人二倍体成纤维细胞(HDF)的热休克蛋白72(HSP72)的基础表达较低,并且对热休克的诱导能力减弱。在轻度热休克期间,短暂暴露于特定且可逆的蛋白酶体抑制剂MG132会导致后期传代HDF合成并积聚高水平的HSP72。这种HSP72表达是持久的,并且似乎是由于HSP72 mRNA的细胞质水平升高和翻译增强所致。 MG132处理后,稳定的mRNA结合蛋白HuR的水平增加。该结果与HuR在协助mRNA输出到细胞质和拮抗其降解中所提出的作用相一致。此外,先前传代的HDF在MG132存在下对后期传代HDF的轻度热冲击保护了这些细胞免受随后严重热冲击的致命作用。这种耐热性的获得似乎与HSP72的水平相关。

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