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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Importance of small heat shock protein 20 (hsp20) C-terminal extension in cardioprotection.
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Importance of small heat shock protein 20 (hsp20) C-terminal extension in cardioprotection.

机译:小型热休克蛋白20(hsp20)C端延伸在心脏保护中的重要性。

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Recent studies show that overexpression of small heat shock protein 20 (Hsp20) in mouse hearts reduces infarct size and improves cardiac performance. However, it is not known whether Hsp20 exerts its protective action through improved calcium handling or chaperone activity. The C-terminal extensions of small heat shock proteins, such as alphaB-crystallin and Hsp25, are implicated in chaperoning activity. Through adenovirus mediated overexpression of Hsp20 with C-terminal extension substitution, we delineated the mechanism of protection. Neonatal and adult rat cardiomyocytes overexpressing either the full-length Hsp20 or Hsp20 with a C-terminal extension substitution were subjected to simulated ischemia for 14-16 h followed by reperfusion 6-8 h. Overexpressing Hsp20 with a C-terminus extension substitution did not protect against simulated ischemia/reperfusion in either adult (98+/-8.8% LDH release of control) or neonatal cardiomyocytes (103+/-1.8% CK release of control) as measured by creatine kinase (CK) and lactate dehydrogenase (LDH) cell viability assays (n=4, P<0.05). However, this Hsp20 C-terminal substitution mutant increased calcium transients 33+/-11% and cell contraction amplitude 60+/-15% as quantified through epifluorescence microscopy (n=16 to 34 cells per heart from 4 to 5 hearts, P<0.05). In contrast, overexpression of the full-length Hsp20 protected cultured adult (53+/-8.5% LDH release of control) and neonatal rat (57+/-8.3% CK release of control) cardiomyocytes from simulated ischemia/reperfusion injury. This overexpression also increased calcium transients 30+/-10% and cell contraction amplitude 50+/-10%. These novel data suggest that the C-terminal extension of Hsp20 is essential for cardioprotection. Hsp20 renders this protection through its C-terminal extension protein domain, while this part of the protein is not involved in the Hsp20 ability to increase both calcium transients and cell contraction.
机译:最近的研究表明,小鼠心脏中小分子热休克蛋白20(Hsp20)的过表达减少了梗塞面积并改善了心脏功能。但是,尚不清楚Hsp20是否通过改善钙的处理或伴侣活性发挥其保护作用。小型热休克蛋白(例如alphaB-crystallin和Hsp25)的C末端延伸与分子伴侣活性有关。通过腺病毒介导的具有C末端延伸取代的Hsp20的过表达,我们描述了保护机制。将过表达全长Hsp20或具有C端延伸替代的Hsp20的新生和成年大鼠心肌细胞进行模拟缺血14-16小时,然后再灌注6-8小时。用C末端延伸替代物过度表达的Hsp20不能防止模拟的局部缺血/再灌注,无论是成人(对照组的LDH释放量为98 +/- 8.8%)还是新生儿心肌细胞(对照组的CK释放量为103 +/- 1.8%)。肌酸激酶(CK)和乳酸脱氢酶(LDH)细胞活力测定(n = 4,P <0.05)。但是,这种Hsp20 C末端取代突变体的钙瞬变增加了33 +/- 11%,细胞收缩幅度增加了60 +/- 15%(通过落射荧光显微镜法进行了定量分析(n = 16至34个细胞/心脏,从4至5个心脏,P < 0.05)。相反,从模拟的局部缺血/再灌注损伤中,全长Hsp20保护的成年心肌(对照组的LDH释放为53 +/- 8.5%)和新生大鼠(对照组的57 +/- 8.3%CK为释放)的过表达。这种过表达还增加了钙瞬变30 +/- 10%,细胞收缩幅度50 +/- 10%。这些新颖的数据表明,Hsp20的C端延伸对于心脏保护至关重要。 Hsp20通过其C末端延伸蛋白结构域提供这种保护,而该蛋白的这一部分不参与Hsp20增加钙瞬变和细胞收缩的能力。

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