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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >MicroRNA-193a Regulates the Transdifferentiation of Human Parietal Epithelial Cells toward a Podocyte Phenotype
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MicroRNA-193a Regulates the Transdifferentiation of Human Parietal Epithelial Cells toward a Podocyte Phenotype

机译:MicroRNA-193a调节人顶上皮细胞向足细胞表型的转分化

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Parietal epithelial cells have been identified as potential progenitor cells in glomerular regeneration, but the molecular mechanisms underlying this process are not fully defined. Here, we established an immortalized polyclonal human parietal epithelial cell (hPEC) line from naive human Bowman's capsule cells isolated by mechanical nnicrodissection. These hPECs expressed high levels of PEC-specific proteins and microRNA-193a (miR-193a), a suppressor of podocyte differentiation through downregulation of Wilms' tumor 1 in mice. We then investigated the function of nniR-193a in the establishment of podocyte and PEC identity and determined whether inhibition of nniR-193a influences the behavior of PECs in glomerular disease. After stable knockdown of miR-193a, hPECs adopted a podocyte-like morphology and marker expression, with decreased expression levels of PEC markers. In mice, inhibition of miR-193a by complementary locked nucleic acids resulted in an upregulation of the podocyte proteins synaptopodin and Wilms' tumor 1. Conversely, overexpression of miR-193a in vivo resulted in the upregulation of PEC markers and the loss of podocyte markers in isolated glomeruli. Inhibition of miR-193a in a mouse model of nephrotoxic nephritis resulted in reduced crescent formation and decreased proteinuria. Together, these results show the establishment of a human PEC line and suggest that nniR-193a functions as a master switch, such that glomerular epithelial cells with high levels of miR-193a adopt a PEC phenotype and cells with low levels of nniR-193a adopt a podocyte phenotype. miR-193a mediated maintenance of PECs in an undifferentiated reactive state might be a prerequisite for PEC proliferation and migration in crescent formation.
机译:顶叶上皮细胞已被确定为肾小球再生中潜在的祖细胞,但这一过程的分子机制尚未完全明确。在这里,我们建立了永生化的人顶壁上皮细胞(hPEC)永生的人鲍曼的胶囊细胞通过机械神经解剖分离的细胞系。这些hPECs表达高水平的PEC特异性蛋白和microRNA-193a(miR-193a),miRNA-193a(miR-193a)是通过下调Wilms肿瘤1在小鼠中的足细胞分化的抑制剂。然后,我们调查了nniR-193a在足细胞和PEC身份建立中的功能,并确定nniR-193a的抑制作用是否会影响肾小球疾病中PECs的行为。在稳定敲低miR-193a之后,hPEC采取了类似足细胞的形态和标志物表达,而PEC标志物的表达水平却下降了。在小鼠中,互补的锁定核酸对miR-193a的抑制导致足细胞蛋白突触足蛋白和Wilms肿瘤1的上调。相反,体内miR-193a的过表达导致PEC标志物的上调和足细胞标志物的丢失。在孤立的肾小球。在肾毒性肾炎小鼠模型中对miR-193a的抑制导致新月体形成减少和蛋白尿减少。总之,这些结果显示了人类PEC系的建立,并暗示nniR-193a充当主开关,从而使miR-193a水平高的肾小球上皮细胞采用PEC表型,而nniR-193a水平低的细胞则采用PEC表型。足细胞表型。 miR-193a介导的PEC在未分化反应状态下的维持可能是PEC在新月形中增殖和迁移的先决条件。

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