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首页> 外文期刊>Redox Biology >HDL subclass proteomic analysis and functional implication of protein dynamic change during HDL maturation
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HDL subclass proteomic analysis and functional implication of protein dynamic change during HDL maturation

机译:HDL亚类蛋白质组学分析和HDL成熟过程中蛋白质动态变化的功能含义

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Recent clinical trials reported that increasing high-density lipoprotein-cholesterol (HDL-C) levels does not improve cardiovascular outcomes. We hypothesize that HDL proteome dynamics determine HDL cardioprotective functions. In this study, we characterized proteome profiles in HDL subclasses and established their functional connection. Mouse plasma was fractionized by fast protein liquid chromatography, examined for protein, cholesterial, phospholipid and trigliceride content. Small, medium and large (S/M/L)-HDL subclasseses were collected for proteomic analysis by mass spectrometry. Fifty-one HDL proteins (39 in S-HDL, 27 in M-HDL and 29 in L-HDL) were identified and grouped into 4 functional categories (lipid metabolism, immune response, coagulation, and others). Eleven HDL common proteins were identified in all HDL subclasses. Sixteen, 3 and 7 proteins were found only in S-HDL, M-HDL and L-HDL, respectively. We established HDL protein dynamic distribution in S/M/L-HDL and developed a model of protein composition change during HDL maturation. We found that cholesterol efflux and immune response are essential functions for all HDL particles, and amino acid metabolism is a special function of S-HDL, whereas anti-coagulation is special for M-HDL. Pon1 is recruited into M/L-HDL to provide its antioxidative function. ApoE is incorporated into L-HDL to optimize its cholesterial clearance function. Next, we acquired HDL proteome data from Pubmed and identified 12 replicated proteins in human and mouse HDL particle. Finally, we extracted 3 shared top moleccular pathways (LXR/RXR, FXR/RXR and acute phase response) for all HDL particles and 5 top disease/bio-functions differentially related to S/M/L-HDL subclasses, and presented one top net works for each HDL subclass. We conclude that beside their essencial functions of cholesterol efflux and immune response, HDL aquired antioxidative and cholesterol clearance functions by recruiting Pon1 and ApoE during HDL maturation.
机译:最近的临床试验报道,增加高密度脂蛋白胆固醇(HDL-C)的水平不会改善心血管疾病的预后。我们假设HDL蛋白质组动力学决定了HDL的心脏保护功能。在这项研究中,我们表征了HDL子类中的蛋白质组图谱,并建立了它们的功能连接。通过快速蛋白质液相色谱分离小鼠血浆,检查蛋白质,胆固醇,磷脂和trigliceride的含量。收集小,中和大(S / M / L)-HDL亚类,通过质谱进行蛋白质组学分析。鉴定了51种HDL蛋白(S-HDL中39种,M-HDL中27种和L-HDL中29种),并将其分为4个功能类别(脂质代谢,免疫反应,凝血等)。在所有HDL亚类中鉴定出11种HDL常见蛋白。仅在S-HDL,M-HDL和L-HDL中分别发现了16种,3种和7种蛋白。我们在S / M / L-HDL中建立了HDL蛋白质动态分布,并开发了HDL成熟期间蛋白质组成变化的模型。我们发现胆固醇外排和免疫反应是所有HDL颗粒必不可少的功能,氨基酸代谢是S-HDL的特殊功能,而抗凝剂是M-HDL的特殊功能。 Pon1被募集到M / L-HDL中以提供其抗氧化功能。 ApoE被整合到L-HDL中以优化其胆固醇清除功能。接下来,我们从Pubmed获得了HDL蛋白质组数据,并鉴定了人和小鼠HDL颗粒中的12种复制蛋白。最后,我们提取了所有HDL颗粒的3条共有的分子通路(LXR / RXR,FXR / RXR和急性期反应)和5种与S / M / L-HDL亚类相关的疾病/生物功能,并提出了一种net适用于每个HDL子类。我们得出的结论是,HDL除了具有胆固醇外排和免疫反应的基本功能外,还通过在HDL成熟期间募集Pon1和ApoE获得抗氧化和胆固醇清除功能。

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