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首页> 外文期刊>American Journal of Physiology >Ischemia-induced phosphorylation and translocation of stress protein alpha B-crystallin to Z lines of myocardium.
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Ischemia-induced phosphorylation and translocation of stress protein alpha B-crystallin to Z lines of myocardium.

机译:缺血诱导的磷酸化和应激蛋白αB-晶状体蛋白向心肌Z线的易位。

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It is becoming clear that stress proteins play a role in various aspects of postischemic myocardial recovery and that the cytoskeleton of cardiac myocytes is an important determinant for cellular survival during ischemia and energy depletion. In the present study, we addressed the question of whether the cytoskeleton-binding stress protein alpha B-crystallin may be involved in early cellular responses of rat and porcine myocardium to ischemia. Immunostaining and subcellular fractionation revealed a rapid ischemia-induced redistribution of alpha B-crystallin from a cytosolic pool to intercalated disks and Z lines of the myofibrils. This striking translocation of alpha B-crystallin from the cytosol to sites of the myofibrillar system that are known to be sensitive to ischemia-reperfusion injury was accompanied by a rapid shift of a fraction of alpha B-crystallin to a more acidic isoelectric point. This shift is caused by alpha B-crystallin phosphorylation, as identified by its augmentation in the presence of phosphatase inhibitors (vanadate, fluoride) and comigration of the acidic alpha B-crystallin form with the phosphorylated B1 form of lenticular alpha B-crystallin. In view of the chaperone-like function of alpha B-crystallin in conjunction with its high level of constitutive expression in the myocardium (1-2% of soluble protein content), we consider alpha B-crystallin an excellent candidate to play a role in early aspects of the protection of the myocardial contractile apparatus against ischemia-reperfusion injury.
机译:越来越清楚的是,应激蛋白在缺血后心肌恢复的各个方面发挥作用,并且心肌细胞的细胞骨架是缺血和能量耗竭期间细胞存活的重要决定因素。在本研究中,我们解决了细胞骨架结合应激蛋白αB-晶状体蛋白是否可能参与大鼠和猪心肌对缺血的早期细胞反应的问题。免疫染色和亚细胞分级分离显示了缺血诱导的αB-晶状蛋白从胞浆池到肌原纤维的插入盘和Z线的快速再分布。 αB-晶状体蛋白从胞浆到已知对缺血-再灌注损伤敏感的肌原纤维系统部位的这种惊人的移位伴随有一部分αB-晶状体蛋白迅速转移至更酸性的等电点。这种变化是由αB-晶状体蛋白磷酸化引起的,正如其在磷酸酶抑制剂(钒酸盐,氟化物)存在下的增加以及酸性αB-晶状体形式与双凸晶状体αB-晶状体蛋白的磷酸化B1形式的迁移所确定的。鉴于αB-晶状蛋白的伴侣样功能及其在心肌中的高水平组成型表达(可溶蛋白含量的1-2%),我们认为αB-晶状蛋白是在心肌中发挥作用的优秀候选者保护心肌收缩装置免受缺血-再灌注损伤的早期方面。

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