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首页> 外文期刊>ACS Omega >CD44, a Predominant Protein in Methylglyoxal-Induced Secretome of Muscle Cells, is Elevated in Diabetic Plasma
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CD44, a Predominant Protein in Methylglyoxal-Induced Secretome of Muscle Cells, is Elevated in Diabetic Plasma

机译:CD44,糖尿病血浆中甲基乙二醛诱导的甲基乙二醛诱导的甲基综肠中的主要蛋白质

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Methylglyoxal (MG), a glycolytic intermediate and reactive dicarbonyl, is responsible for exacerbation of insulin resistance and diabetic complication. In this study, MG-induced secretome of rat muscle cells was identified and relatively quantified by SWATH-MS. A total of 643 proteins were identified in MG-induced secretome, of which 82 proteins were upregulated and 99 proteins were downregulated by more than 1.3-fold in SWATH analysis. Further, secretory proteins from the classical secretory pathway and nonclassical secretory pathway were identified using SignalP and SecretomeP, respectively. A total of 180 proteins were identified with SignalP, and 113 proteins were identified with SecretomeP. The differentially expressed proteins were functionally annotated by KEGG pathway analysis using Cytoscape software with plugin clusterMaker. The differentially expressed proteins were found to be involved in various pathways like extracellular matrix (ECM)–receptor interaction, leukocyte transendothelial migration, fluid shear stress and atherosclerosis, complement and coagulation cascades, and lysosomal pathway. Since the MG levels are high in diabetic conditions, the presence of MG-induced secreted proteins was inspected by profiling human plasma of healthy and diabetic subjects (n = 10 each). CD44, a predominant MG-induced secreted protein, was found to be elevated in the diabetic plasma and to have a role in the development of insulin resistance.
机译:甲基乙二醛(Mg),糖酵解中间体和反应性二羰基,负责恶化胰岛素抵抗和糖尿病并发症。在本研究中,通过SWATH-MS鉴定了鉴定了MG诱导的大鼠肌细胞沉淀物。在Mg诱导的沉淀中鉴定了总共643个蛋白质,其中将82个蛋白质上调,并在SWATH分析中将99个蛋白质下调超过1.3倍。此外,使用SignalP和乳酰核,分别鉴定来自经典分泌途径和非生化分泌途径的分泌蛋白。用SIGNALP鉴定总共180个蛋白质,并用乳汁鉴定113个蛋白质。使用Cytoskape软件与插件簇制造商的Cytoscape软件在功能上用差异表达的蛋白质。发现差异表达的蛋白质涉及诸如细胞外基质(ECM)的途径(ECM) - 青细胞相互作用,白细胞转诊偏移,流体剪切应力和动脉粥样硬化,补体和凝血级联,以及溶酶体途径。由于糖尿病条件的Mg水平高,因此通过分析健康和糖尿病受试者的人血浆(每次)的血浆来检查MG诱导的分泌蛋白的存在。 CD44是一种主要的MG诱导的分泌蛋白,被发现在糖尿病血浆中升高并在胰岛素抗性的发展中具有作用。

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