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HSP70 Inhibition Leads to the Activation of Proteasomal System under Mild Hyperthermia Conditions in Young and Senescent Fibroblasts

机译:HSP70抑制导致青年和衰老成纤维细胞温和的热疗下的蛋白酶体系的激活

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Aging has been characterized with the accumulation of oxidized proteins, as a consequence of progressive decline in proteostasis capacity. Among others, proteasomal system is an efficient protein turnover complex to avoid aggregation of oxidized proteins. Heat shock protein 70 (HSP70) is another critical player that is involved in some key processes including the correct folding of misfolded proteins and targeting aggregated proteins to the proteasome for rapid degradation. The aim of this study was to determine the role of proteasomal system and heat shock proteins to maintain proteome balance during replicative senescence in mild hyperthermia conditions. Our results demonstrated that HSP40/70 machinery is induced by mild hyperthermia conditions independent from senescence conditions. Since HSP70 is largely responsible for the rapidly inducible cell protection following hyperthermia, the activation of “heat shock response” resulted in the elevation of HSP40/70 expressions as well as the proteasome activity. Interestingly, when HSP70 expression was inhibited, increased proteasomal activation was shown to be responsive to mild hyperthermia. Since HSP70 is involved in various stress-related pathways such as oxidative and endoplasmic reticulum stress, depletion of HSP70 expression may induce proteasomal degradation to maintain proteome balance of the cell. Thus, our data suggests that in mild heat stress conditions, molecular chaperone HSP70 plays an important role to avoid protein oxidation and aggregation; however, activities of proteasomal system are induced when HSP70 expression is depleted.
机译:由于蛋白质体能力的逐渐下降,已经表征了氧化蛋白的积累。其中,蛋白酶体系是一种有效的蛋白质周转络合物,以避免氧化蛋白的聚集。热休克蛋白70(HSP70)是另一种涉及的关键播放器,其涉及一些关键方法,包括正确折叠错误折叠的蛋白质和靶向蛋白质以快速降解的蛋白酶体进行靶向蛋白质。本研究的目的是确定蛋白酶体系和热休克蛋白的作用,以在轻度热疗病症中复制衰老期间保持蛋白质组平衡。我们的结果表明,HSP40 / 70机械由轻度热疗诱导,与衰老条件无关。由于HSP70在热疗后迅速诱导的细胞保护主要负责,因此“热休克反应”的激活导致Hsp40 / 70表现的升高以及蛋白酶体活性。有趣的是,当抑制HSP70表达时,显示出增加的蛋白酶体活化对温和的热热性反应。由于HSP70涉及各种应力相关的途径,例如氧化和内质网应力,但HSP70表达的耗竭可能诱导蛋白酶体降解以保持细胞的蛋白质组平衡。因此,我们的数据表明,在温和的热应激条件下,分子伴侣Hsp70起到了重要作用,以避免蛋白质氧化和聚集;然而,当HSP70表达耗尽时,诱导蛋白酶体系的活性。

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