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Definition of a cell surface signature for human cardiac progenitor cells after comprehensive comparative transcriptomic and proteomic characterization

机译:全面比较转录组和蛋白质组学表征后人心脏祖细胞的细胞表面标记的定义

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摘要

Adult cardiac progenitor/stem cells (CPC/CSC) are multipotent resident populations involved in cardiac homeostasis and heart repair. Assisted by complementary RNAseq analysis, we defined the fraction of the CPC proteome associable with specific functions by comparison with human bone marrow mesenchymal stem cells (MSC), the reference population for cell therapy, and human dermal fibroblasts (HDF), as a distant reference. Label-free proteomic analysis identified 526 proteins expressed differentially in CPC. iTRAQ analysis confirmed differential expression of a substantial proportion of those proteins in CPC relative to MSC, and systems biology analysis defined a clear overrepresentation of several categories related to enhanced angiogenic potential. The CPC plasma membrane compartment comprised 1,595 proteins, including a minimal signature of 167 proteins preferentially or exclusively expressed by CPC. CDH5 (VE-cadherin),  OX2G (OX-2 membrane glycoprotein; CD200), GPR4 (G protein-coupled receptor 4), CACNG7 (calcium voltage-gated channel auxiliary subunit gamma 7) and F11R (F11 receptor; junctional adhesion molecule A; JAM-A; CD321) were selected for validation. Their differential expression was confirmed both in expanded CPC batches and in early stages of isolation, particularly when compared against cardiac fibroblasts. Among them, GPR4 demonstrated the highest discrimination capacity between all cell lineages analyzed.
机译:成人心脏祖细胞/干细胞(CPC / CSC)是参与心脏动态平衡和心脏修复的多能常驻种群。在互补RNAseq分析的辅助下,我们通过与人骨髓间充质干细胞(MSC),细胞疗法的参考人群和人皮肤成纤维细胞(HDF)进行比较,定义了与特定功能相关的CPC蛋白组的比例。无标记蛋白质组学分析鉴定了526种在CPC中差异表达的蛋白质。 iTRAQ分析证实了相对于MSC,这些蛋白质在CPC中的表达差异很大,而系统生物学分析明确表明了与血管生成潜能相关的几类物质的明显过量表达。 CPC质膜区室包含1,595种蛋白质,包括167种蛋白质的最小签名,这些蛋白质优先或完全由CPC表示。 CDH5(VE-钙黏着蛋白),OX2G(OX-2膜糖蛋白; CD200),GPR4(G蛋白偶联受体4),CACNG7(钙电压门控通道辅助亚基γ7)和F11R(F11受体;连接黏附分子A ; JAM-A; CD321)进行了验证。在扩增的CPC批次和分离的早期阶段均证实了它们的差异表达,特别是与心脏成纤维细胞相比时。其中,GPR4在所有分析的细胞谱系之间显示出最高的区分能力。

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