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Effects of HIP in protection of HSP70 for stress-induced cardiomyocytes injury and its glucorticoid receptor pathway

机译:HIP对应激性心肌细胞HSP70的保护作用及其糖皮质激素受体途径

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Moderate levels of stress can be beneficial to health, while stress overload can cause injury or contribute to diseases. Despite a number of studies of adaptation or stress damage, the mechanisms of adaptation and stress damage remain far from clear. The effect and mechanisms of adaptation on cardiomyocytes damage caused by stress overload are discussed in this study. Data showed that mild repeated stress mitigated stress overload-induced cardiomyocyte injury both in an animal model of restraint stress and in H9C2 cells with GC (glucocorticoid) treatment. HSP70, HIP expression and interaction between HSP70 and HIP increased during adaptation induced by mild stress both in animals and H9C2 cells. Overexpression or inhibition of HSP70 in H9C2 cells with pCDNA-3.1-Hsp70 or KNK437 (HSP70 inhibitor) showed that HSP70 can protect H9C2 cells from GC-induced cell damage. A luciferase assay showed that Hsp70 plays its protective role through inhibition of GR transcription activity dependent on the interaction with HIP. These results indicated that HSP70 may promote adaptation with its interacting protein HIP, and increased levels of HSP70 and its interacting protein HIP during adaptation may play a protective role on stress-overload-induced cardiomyocyte injury.
机译:适度的压力可能有益于健康,而压力超负荷则可能导致伤害或导致疾病。尽管对适应或压力损伤进行了许多研究,但是适应和压力损伤的机制仍很不清楚。在这项研究中讨论了适应对应激超负荷引起的心肌细胞损伤的作用和机制。数据显示,轻度反复应激可在约束应激动物模型和采用GC(糖皮质激素)治疗的H9C2细胞中减轻应激超负荷引起的心肌细胞损伤。在动物和H9C2细胞中,轻度胁迫诱导的适应过程中,HSP70,HIP表达以及HSP70和HIP之间的相互作用增加。用pCDNA-3.1-Hsp70或KNK437(HSP70抑制剂)在H9C2细胞中过表达或抑制HSP70表明,HSP70可以保护H9C2细胞免受GC诱导的细胞损伤。萤光素酶检测显示Hsp70通过抑制GR转录活性(取决于与HIP的相互作用)发挥其保护作用。这些结果表明,HSP70可能通过其相互作用的蛋白HIP促进适应,并且在适应过程中HSP70及其相互作用的蛋白HIP的水平升高可能对应激超负荷引起的心肌细胞损伤起保护作用。

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