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新型环状螺旋B肽介导急性肾损伤肾保护作用的蛋白质组学分析

Proteome Analysis of Renoprotection Mediated by a Novel Cyclic Helix B Peptide in Acute Kidney Injury.

作者信息

Yang Cheng, Liu Junjun, Li Long, Hu Meiyu, Long Yaqiu, Liu Xiaohui, Zhu Tongyu, Huang Xiao, Zhao Shouliang, Liu Shangfeng, Rong Ruiming

机构信息

Department of Urology, Zhongshan Hospital, Fudan University, Shanghai, 200032, China.

Shanghai Key Laboratory of Organ Transplantation, Shanghai, 200032, China.

出版信息

Sci Rep. 2015 Dec 10;5:18045. doi: 10.1038/srep18045.

Abstract

We developed a novel, erythropoietin-derived, non-erythropoiesis, cyclic helix B peptide (CHBP) that displays potent renoprotection against acute kidney injury (AKI). To determine the mechanism of CHBP-mediated protection, we investigated the proteomic profile of mice treated with CHBP in a kidney ischemia-reperfusion (IR) injury model. The isobaric tags for relative and absolute quantitation (iTRAQ)-labeled samples were analyzed using a QSTAR XL LC/MS system. In total, 38 differentially expressed proteins (DEPs) were shared by all experimental groups, while 3 DEPs were detected specifically in the IR + CHBP group. Eight significant pathways were identified, and oxidative phosphorylation was shown to be the most important pathway in CHBP-mediated renoprotection. The significant DEPs in the oxidative phosphorylation pathway elicited by CHBP are NADH-ubiquinone oxidoreductase Fe-S protein 6 (NDUFS6), alpha-aminoadipic semialdehyde synthase (AASS) and ATP-binding cassette sub-family D member 3 (ABCD3). The DEPs mentioned above were verified by RT-qPCR and immunostaining in mouse kidneys. We tested 6 DEPs in human biopsy samples from kidney transplant recipients. The trend of differential expression was consistent with that in the murine model. In conclusion, this study helps to elucidate the pharmacological mechanisms of CHBP before clinical translation.

摘要

我们研发了一种新型的、源自促红细胞生成素的、非促红细胞生成的环状螺旋B肽(CHBP),其对急性肾损伤(AKI)具有强大的肾脏保护作用。为了确定CHBP介导的保护机制,我们在肾脏缺血再灌注(IR)损伤模型中研究了用CHBP处理的小鼠的蛋白质组学特征。使用QSTAR XL液相色谱/质谱系统分析了相对和绝对定量的等压标签(iTRAQ)标记的样品。所有实验组共鉴定出38种差异表达蛋白(DEP),而在IR + CHBP组中特异性检测到3种DEP。确定了8条重要途径,氧化磷酸化被证明是CHBP介导的肾脏保护中最重要的途径。CHBP在氧化磷酸化途径中引起的显著DEP是NADH-泛醌氧化还原酶铁硫蛋白6(NDUFS6)、α-氨基己二酸半醛合酶(AASS)和ATP结合盒亚家族D成员3(ABCD3)。上述DEP在小鼠肾脏中通过RT-qPCR和免疫染色进行了验证。我们在肾移植受者的人类活检样本中测试了6种DEP。差异表达趋势与小鼠模型一致。总之,本研究有助于在临床转化前阐明CHBP的药理机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a9a/4674932/abae6eb9b82d/srep18045-f1.jpg

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