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首页> 外文期刊>Cell death & disease. >Yes-associated protein regulates podocyte cell cycle re-entry and dedifferentiation in adriamycin-induced nephropathy
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Yes-associated protein regulates podocyte cell cycle re-entry and dedifferentiation in adriamycin-induced nephropathy

机译:是相关的蛋白质调节泛细胞细胞周期重新进入和去除湿剂在亚霉素诱导的肾病中

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Podocytes are terminally differentiated cells with little proliferative capacity. The high expression levels of cell cycle inhibitory proteins, including p21, p27, and p57, play an important role in maintaining the low level of proliferation of mature podocytes. In the present study, we aimed to explore the role of yes-associated protein (YAP) signalling in adriamycin-induced podocyte re-entry into the cell cycle and dedifferentiation. Proliferating cell nuclear antigen (PCNA)-, cyclin-dependent kinase 4 (CDK4)-, and Cyclin D1-positive podocytes were found in mice with adriamycin-induced nephropathy. In vitro, adriamycin administration increased the percentage of cells in S phase and the upregulation of mesenchymal-related marker proteins. CDK4 and cyclin D1 were significantly up-regulated after incubation with adriamycin. Overexpression of YAP in podocytes promoted their entry into the cell cycle; up-regulated cyclin D1, desmin, and snail2 expression and down-regulated Wilms' tumour 1 (WT1) and nephrin production. Recombinant murine FGF-basic induced podocytes to re-enter the cell cycle, inhibited WT1 and nephrin, and increased desmin and snail2 expression. Pretreating podocytes with verteporfin, an inhibitor of YAP/ TEA domain transcription factor (TEAD), decreased the adriamycin-induced overexpression of cyclin D1 and reduced the ratio of S-phase podocytes. This result was further verified by knocking down YAP expression using RNA interference. In conclusion, adriamycin induced podocytes to re-enter the cell cycle via upregulation of CDK4 and cyclin D1 expression, which was at least partly mediated by YAP signalling. Re-entry into the cell cycle induced the over-expression of mesenchymal markers in podocytes.
机译:巨粒细胞是终端分化的细胞,具有较少的增殖能力。细胞周期抑制蛋白的高表达水平,包括P21,P27和P57,在维持成熟孔节节的低水平方面发挥着重要作用。在本研究中,我们旨在探讨亚霉素诱导的泛细胞再进入的亚霉素诱导的podocyte中的蛋白质(yap)信号传导中的作用和去分化。在具有亚霉素诱导的肾病的小鼠中发现了增殖细胞核抗原(PCNA) - ,细胞周期蛋白依赖性激酶4(CDK4) - 和细胞周期蛋白D1阳性孔细胞。体外,Adriamycin给药增加了S期细胞的百分比和间充质相关标记蛋白的上调。与Adriamcin孵育后CDK4和Cyclin D1显着上调。在足粒细胞中的yap过表达促进了它们进入细胞周期的进入;上调的细胞周期蛋白D1,Desmin和Snail2表达和下调的Wilms肿瘤1(WT1)和肾脏生产。重组鼠FGF-碱性诱导的诱导孔细胞重新进入细胞周期,抑制WT1和Nephrin,并增加脱敏和蜗牛2表达。用Verteporfin,yap /茶片域转录因子(Tead)的抑制剂预处理孔细胞,降低了细胞周期蛋白D1的亚霉素诱导的过表达,并降低了S相管孔的比例。通过使用RNA干扰敲击yap表达进一步验证该结果。总之,亚霉素诱导的大织物通过CDK4和细胞周期蛋白D1表达通过上调重新进入细胞周期,其至少部分地由YAP信号传导介导。重新进入细胞周期诱导孔细胞中间充质标志物的过表达。

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