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首页> 外文期刊>Proteomics. Clinical applications >Heat-shock protein-27,-70 and peroxiredoxin-II show molecular chaperone function in sickle red cells: Evidence from transgenic sickle cell mouse model
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Heat-shock protein-27,-70 and peroxiredoxin-II show molecular chaperone function in sickle red cells: Evidence from transgenic sickle cell mouse model

机译:热休克蛋白27,-70和过氧化物酶II在镰状红细胞中显示分子伴侣功能:转基因镰状细胞小鼠模型的证据

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摘要

Sickle cell disease (SCD) is an autosomal recessive genetic red cell disorder characterized by the production of a defective form of hemoglobin, hemoglobin-S, that is worldwide-distributed. The acute clinical manifestations of SCD are related to hemoglobin cyclic-polymerization and to the generation of rigid, dense red blood cells (RBCs). We studied RBCs membrane proteome from human sickle RBCs, fractioned according to density compared to normal RBCs. 2-DE followed by MS analysis was carried out. We identified 65 proteins differently expressed, divided into five major clusters according to their functions: (i) membrane-cytoskeleton proteins; (ii) metabolic enzymes; (iii) ubiquitin-proteasome-system; (iv) flotillins; (v) chaperones. HSP27, HSP70 and peroxiredoxin-II (Prx-II) showed the most relevant changes. They were differently recruited to sickle RBCs membrane in response to in vitro hypoxia. Potential markers were then validated in a transgenic-mouse model for SCD, the SAD mice, exposed to hypoxia mimicking acute SCD vasoocclusive-crisis (VOCs); we found that HSP70 and HSP27 bound to RBCs membrane respectively after 12 h and 48 h of hypoxia, while Prx-II membrane binding was modulated during hypoxia. Our data indicate that HSP27 and HSP70 play a novel role as RBCs membrane protein protectors and as possibly new markers of severity of RBCs membrane damage during acute VOCs.
机译:镰状细胞病(SCD)是一种常染色体隐性遗传性红细胞疾病,其特征是产生缺陷形式的血红蛋白,血红蛋白-S,其分布在世界各地。 SCD的急性临床表现与血红蛋白循环聚合以及刚性,致密的红细胞(RBC)的产生有关。我们研究了来自人类镰状红细胞的红细胞膜蛋白质组,与正常红细胞相比,按密度分级。进行2-DE,然后进行MS分析。我们鉴定了65种不同表达的蛋白质,根据其功能分为五个主要簇:(i)膜细胞骨架蛋白; (ii)代谢酶; (iii)泛素-蛋白酶体系统; (iv)弗洛蒂林; (v)伴侣。 HSP27,HSP70和过氧化物酶-II(Prx-II)显示了最相关的变化。他们被不同地募集到镰刀红细胞膜以响应体外缺氧。然后在暴露于模拟急性SCD血管闭塞性危机(VOC)的低氧的SCD转基因小鼠模型中验证了潜在标记。我们发现,HSP70和HSP27在缺氧12 h和48 h后分别结合到RBCs膜上,而Prx-II膜结合在缺氧期间被调节。我们的数据表明,HSP27和HSP70充当RBCs膜蛋白保护剂的新角色,并可能是急性VOC期间RBCs膜损伤严重程度的新标志。

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