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首页> 外文期刊>Cell death & disease. >The elimination of miR-23a in heat-stressed cells promotes NOXA-induced cell death and is prevented by HSP70
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The elimination of miR-23a in heat-stressed cells promotes NOXA-induced cell death and is prevented by HSP70

机译:在热应激细胞中消除miR-23a会促进NOXA诱导的细胞死亡,并被HSP70阻止

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Protein-damaging stress stimulates cell destruction through apoptosis; however, non-lethal proteotoxic stress induces an adaptive response leading to the increased synthesis of heat shock proteins, which inhibit apoptosis. In this study, we sought to determine the mechanism responsible for the accumulation of the BH3-only protein NOXA in heat-stressed cells and its prevention by the heat shock protein HSP70. Analysis of transcript levels by RT-qPCR revealed that miR-23a levels decreased in heat-stressed cells and that this was correlated with an increased abundance of NOXA mRNA, which contains a miR-23a binding site in its 3′ untranslated region. Cells overexpressing HSP70 had higher levels of miR-23a, maintained these levels after heat shock and accumulated lower levels of NOXA mRNA and protein. The enhanced abundance of mir-23a in these HSP70-expressing cells is primarily due to its increased stability although higher levels of pri/pre-miR-23a expression, nuclear export and maturation were also contributing factors. Stable overexpression of miR-23a in the acute lymphoblastic T-cell line PEER resulted in reduced basal and heat-induced levels of NOXA mRNA and significantly inhibited heat-induced apoptosis. Additionally, stable overexpression of an shRNA targeting miR-23a in U937 lymphoma cells produced stable knockdown of miR-23a and resulted in increased NOXA mRNA and an increased sensitivity to heat-induced apoptosis. These results demonstrate the novel finding that hyperthermia affects the abundance of a microRNA that targets the expression of a pro-apoptotic protein and that HSP70 protects cells from heat-induced apoptosis by regulating the abundance of this microRNA. We speculate that the inhibition of miRNA transcription in heat-stressed cells could represent a general mechanism for apoptosis induction that is regulated by the molecular chaperone protein HSP70. Furthermore, we propose that HSP70 could be beneficial to tumor cells by helping to maintain the expression of oncogenic miRNAs under conditions of cellular stress.
机译:破坏蛋白质的应激会通过凋亡刺激细胞破坏;然而,非致命的蛋白毒性应激诱导了适应性反应,导致热休克蛋白合成增加,从而抑制了细胞凋亡。在这项研究中,我们试图确定负责热应激细胞中仅BH3蛋白NOXA积累的机制以及通过热休克蛋白HSP70对其的预防。通过RT-qPCR分析转录水平发现,热应激细胞中miR-23a水平降低,这与NOXA mRNA丰度增加相关,NOXA mRNA的3'非翻译区含有miR-23a结合位点。过度表达HSP70的细胞具有较高的miR-23a水平,在热激后保持这些水平,并累积较低水平的NOXA mRNA和蛋白质。在这些表达HSP70的细胞中mir-23a的丰度增加主要是由于其稳定性提高,尽管pri / pre-miR-23a表达水平较高,核输出和成熟也是造成这种情况的因素。 miR-23a在急性淋巴细胞性T细胞株PEER中的稳定过表达导致基础和热诱导的NOXA mRNA水平降低,并显着抑制了热诱导的细胞凋亡。此外,在U937淋巴瘤细胞中靶向miR-23a的shRNA的稳定过表达产生了miR-23a的稳定敲低,并导致NOXA mRNA的增加和对热诱导凋亡的敏感性增加。这些结果证明了新发现:热疗影响靶向促凋亡蛋白表达的microRNA的丰度,并且HSP70通过调节该microRNA的丰度来保护细胞免受热诱导的细胞凋亡。我们推测在热应激细胞中抑制miRNA转录可能代表了由分子伴侣蛋白HSP70调控的凋亡诱导的一般机制。此外,我们提出,HSP70通过帮助在细胞应激条件下维持致癌miRNA的表达,可能对肿瘤细胞有益。

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