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The interactive association between heat shock factor?1 and heat shock proteins in primary myocardial?cells subjected to heat stress

机译:热应激因子1与热应激后心肌细胞热激蛋白的相互作用

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Heat shock factor?1?(HSF1) is a heat shock transcription factor that rapidly induces heat shock gene transcription following thermal stress. In this study, we subjected primary neonatal rat myocardial cells to heat stress in?vitro to create a model system for investigating the trends in expression and association between various heat shock proteins?(HSPs) and HSF1 under adverse environmental conditions. After the cells were subjected to heat stress at 42?C for different periods of time, HSP and HSF1 mRNA and protein levels were detected by qPCR and western blot analysis in the heat-stressed cells. The HSF1 expression levels significantly increased in the cells following 120?min of exposure to heat stess compared to the levels observed at the beginning of heat stress exposure. HSP90 followed a similar trend in expression to HSF1, whereas HSP70 followed an opposite trend. However, no significant changes were observed in the crystallin,?alpha?B?(CRYAB, also known as HSP beta-5) expression levels during the 480?min period of exposure to heat stress. The interaction between the HSPs and HSF1 was analyzed by STRING?9.1, and it was found that HSF1 interacted with HSP90 and HSP70, and that it did not play a role in regulating CRYAB expression. Based on our findings, HSP70 may suppress HSF1 in rat myocardial cells under conditions of heat stress. Furthermore, our data demonstrate that HSF1 is not the key factor for all HSPs, and this was particularly the case for CRYAB.
机译:热激因子α1(HSF1)是一种热激转录因子,在热应激后迅速诱导热激基因转录。在这项研究中,我们对原代新生大鼠心肌细胞进行体外热应激,以创建一个模型系统,以研究在不利的环境条件下各种热休克蛋白(HSPs)和HSF1之间的表达和关联趋势。将细胞在42°C下不同时间热应激后,通过qPCR和Western blot分析检测热应激细胞中的HSP和HSF1 mRNA和蛋白质水平。与在热应激暴露开始时观察到的水平相比,在暴露于热应力120min后,细胞中HSF1表达水平显着增加。 HSP90的表达趋势与HSF1类似,而HSP70的表达趋势相反。然而,在暴露于热应激的480分钟期间,结晶蛋白ααBB(CRYAB,也称为HSPβ-5)表达水平没有观察到显着变化。通过STRING?9.1分析了HSPs与HSF1之间的相互作用,发现HSF1与HSP90和HSP70相互作用,并且在调节CRYAB表达中没有作用。根据我们的发现,HSP70可能在热应激条件下抑制大鼠心肌细胞中的HSF1。此外,我们的数据表明,HSF1不是所有HSP的关键因素,对于CRYAB尤其如此。

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