首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Hsp70 accumulation in chondrocytic cells exposed to high continuous hydrostatic pressure coincides with mRNA stabilization rather than transcriptional activation
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Hsp70 accumulation in chondrocytic cells exposed to high continuous hydrostatic pressure coincides with mRNA stabilization rather than transcriptional activation

机译:Hsp70在暴露于高持续静水压力下的软骨细胞中的积累与mRNA稳定而不是转录激活相吻合

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摘要

In response to various stress stimuli, heat shock genes are induced to express heat shock proteins (Hsps). Previous studies have revealed that expression of heat shock genes is regulated both at transcriptional and posttranscriptional level, and the rapid transcriptional induction of heat shock genes involves activation of the specific transcription factor, heat shock factor 1 (HSF1). Furthermore, the transcriptional induction can vary in intensity and kinetics in a signal- and cell-type-dependent manner. In this study, we demonstrate that mechanical loading in the form of hydrostatic pressure increases heat shock gene expression in human chondrocyte-like cells. The response to continuous high hydrostatic pressure was characterized by elevated mRNA and protein levels of Hsp70, without activation of HSF1 and transcriptional induction of hsp70 gene. The increased expression of Hsp70 was mediated through stabilization of hsp70 mRNA molecules. Interestingly, in contrast to static pressurization, cyclic hydrostatic loading did not result in the induction of heat shock genes. Our findings show that hsp70 gene expression is regulated posttranscriptionally without transcriptional induction in chondrocyte-like cells upon exposure to high continuous hydrostatic pressure. We suggest that the posttranscriptional regulation in the form of hsp70 mRNA stabilization provides an additional mode of heat shock gene regulation that is likely to be of significant importance in certain forms of stress.
机译:响应各种应激刺激,诱导热激基因表达热激蛋白(Hsps)。先前的研究表明,热激基因的表达在转录和转录后水平上均受到调节,并且热激基因的快速转录诱导涉及特定转录因子热激因子1(HSF1)的激活。此外,转录诱导可以信号和细胞类型依赖性方式改变强度和动力学。在这项研究中,我们证明以静水压力形式的机械负荷会增加人软骨样细胞中热激基因的表达。对持续的高静水压力的响应的特征在于Hsp70的mRNA和蛋白水平升高,而没有激活HSF1和hsp70基因的转录诱导。 Hsp70表达的增加是通过稳定hsp70 mRNA分子介导的。有趣的是,与静态加压相反,循环静液压加载不会导致热激基因的诱导。我们的发现表明,在高持续静水压力下,软骨细胞样细胞中的hsp70基因表达在转录后受到调控,而没有转录诱导。我们建议,hsp70 mRNA稳定形式的转录后调控提供了热休克基因调控的另一种模式,该模式在某些形式的应激中可能具有重要意义。

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