Chong K Y, Lai C C, Lille S, Chang C, Su C Y
Southern Illinois University School of Medicine, Department of Medicine/Pharmacology, Springfield, IL 62794, USA.
J Mol Cell Cardiol. 1998 Mar;30(3):599-608. doi: 10.1006/jmcc.1997.0623.
We have previously reported that thermal preconditioning confers an oxidative resistance in rat heart-derived H9c2 myocytes. The development of this resistance is associated with a co-expression of both inducible (hsp70i) and constitutive (hsp70c) forms of the 70-kD heat shock proteins, suggesting an antioxidant role for these proteins. Overexpression of hsp70i has been shown to render cells more tolerant to oxidative challenge. The present study sought to determine whether increases in hsp70c, the constitutive member of this protein family, are also positively correlated to oxidative protection. A rat cDNA encoding hsp70c was inserted into a mammalian expression vector, allowing transcription of the inserted gene to be regulated by a powerful cytomegaloviral promoter. After introduction of this construct into H9c2 myocytes, stable clones were obtained. Western and Northern blot analysis of the derived clones showed a two-fold increase in hsp70c mRNA and protein concentrations. These clones were more resistant to thermal killing when compared to control cells transfected with the vector alone, implicating a functional role for the overexpressed hsp70c protein. hsp70c-enriched cells also exhibited a marked resistance to oxidative challenges, including exposure to hydrogen peroxide (H2O2), hydroxyl radical, menadione, and hypoxia/reoxygenation. These findings indicate that hsp70c overexpression provides a protective effect against endogenous or exogenously generated reactive oxygen species (ROS), suggesting that hsp70c actively participates in the heat shock-induced oxidative protection.
我们之前报道过热预处理可赋予大鼠心脏来源的H9c2心肌细胞抗氧化能力。这种抗性的产生与70-kD热休克蛋白的诱导型(hsp70i)和组成型(hsp70c)形式的共同表达有关,提示这些蛋白具有抗氧化作用。已表明hsp70i的过表达可使细胞对氧化应激更具耐受性。本研究旨在确定该蛋白家族的组成型成员hsp70c的增加是否也与氧化保护呈正相关。将编码hsp70c的大鼠cDNA插入哺乳动物表达载体,使插入基因的转录受强大的巨细胞病毒启动子调控。将该构建体导入H9c2心肌细胞后,获得了稳定克隆。对所得克隆进行的蛋白质免疫印迹和Northern印迹分析显示,hsp70c mRNA和蛋白质浓度增加了两倍。与仅用载体转染的对照细胞相比,这些克隆对热杀伤更具抗性,提示过表达的hsp70c蛋白具有功能作用。富含hsp70c的细胞对氧化应激也表现出显著抗性,包括暴露于过氧化氢(H2O2)、羟基自由基、甲萘醌以及缺氧/复氧。这些发现表明,hsp70c的过表达对内源性或外源性产生的活性氧(ROS)具有保护作用,提示hsp70c积极参与热休克诱导的氧化保护。