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首页> 外文期刊>American Journal of Physiology >HSP27 regulates p53 transcriptional activity in doxorubicin-treated fibroblasts and cardiac H9c2 cells: p21 upregulation and G_2/M phase cell cycle arrest
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HSP27 regulates p53 transcriptional activity in doxorubicin-treated fibroblasts and cardiac H9c2 cells: p21 upregulation and G_2/M phase cell cycle arrest

机译:HSP27调节阿霉素处理的成纤维细胞和心脏H9c2细胞中的p53转录活性:p21上调和G_2 / M期细胞周期停滞

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摘要

Treatment of cancer patients with anfhracyclin-based chemotherapeutic drugs induces congestive heart failure by a mechanism involving p53. However, it is not known how p53 aggravates doxorubicin (Dox)-induced toxicity in the heart. On the basis of in vitro acute toxicity assay using heat shock factor-1 (HSF-1) wild-type (HSF-1~(+/+)) and HSF-1-knockout (HSF-1~(-/-)) mouse embryonic fibroblasts and neonatal rat cardiomyocyte-derivedH9c2 cells, we demonstrate a novel mechanism whereby heat shock protein 27 (HSP27) regulates transcriptional activity of p53 in Dox-treated cells. Inhibition of p53 by pifithrin-alpha (PFT-alpha) provided different levels of protection from Dox that correlate with HSP27 levels in these cells. In HSF-1~(+/+) cells, PFT-alpha attenuated Dox-induced toxicity. However, in HSF-1~(-/-) cells (which express a very low level of HSP27 compared with HSF-1~(+/+) cells), there was no such attenuation, indicating an important role of HSP27 in p53-dependent cell death. On the other hand, immunoprecipitation of p53 was found to coimmunoprecipitate HSP27 and vice versa (confirmed by Western blotting and matrix-assisted laser desorption/ionizationtime of flight), demonstrating HSP27 binding to p53 in Dox-treated cells. Moreover, upregulation of p21 was observed in HSF-1~(+/+) and H9c2 cells, indicating that HSP27 binding transactivatesp53 and enhances transcription of p21 in response to Dox treatment. Further analysis with flow cytometry showed that increased expression of p21 results in G_2/M phase cell cycle arrest in Doxtreatedcells. Overall, HSP27 binding to p53 attenuated the cellular toxicity by upregulating p21 and prevented cell death.
机译:用基于环磷酰胺的化学药物治疗癌症患者可通过涉及p53的机制诱发充血性心力衰竭。但是,尚不清楚p53如何加剧阿霉素(Dox)对心脏的毒性。基于野生型热激因子-1(HSF-1)(HSF-1〜(+ / +))和HSF-1-敲除(HSF-1〜(-/-)的体外急性毒性试验)小鼠胚胎成纤维细胞和新生鼠心肌细胞衍生的H9c2细胞,我们证明了一种新的机制,其中热休克蛋白27(HSP27)调节Dox处理的细胞中p53的转录活性。 pifithrin-α(PFT-alpha)对p53的抑制作用提供了与Dox不同的保护水平,Dox与这些细胞中的HSP27水平相关。在HSF-1〜(+ / +)细胞中,PFT-α减弱了Dox诱导的毒性。但是,在HSF-1〜(-/-)细胞(与HSF-1〜(+ / +)细胞相比,HSP27的表达水平非常低)中,没有这种衰减,表明HSP27在p53中的重要作用依赖性细胞死亡。另一方面,发现p53的免疫沉淀可共免疫沉淀HSP27,反之亦然(通过Western印迹和基质辅助激光解吸/电离飞行时间证实),证明HSP27与Dox处理细胞中的p53结合。此外,在HSF-1〜(+ / +)和H9c2细胞中观察到p21的上调,表明HSP27结合transactivsp53并响应Dox处理增强了p21的转录。流式细胞仪进一步分析表明,p21的表达增加导致Dox处理细胞中G_2 / M期细胞周期停滞。总体而言,HSP27与p53的结合可通过上调p21来减弱细胞毒性,并防止细胞死亡。

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