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首页> 外文期刊>Molecular and Cellular Biology >VHL Induces Renal Cell Differentiation and Growth Arrest through Integration of Cell-Cell and Cell-Extracellular Matrix Signaling
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VHL Induces Renal Cell Differentiation and Growth Arrest through Integration of Cell-Cell and Cell-Extracellular Matrix Signaling

机译:VHL通过细胞-细胞和细胞-细胞外基质信号的整合诱导肾细胞分化和生长停滞

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摘要

Mutations in the von Hippel-Lindau (VHL) gene are involved in the family cancer syndrome for which it is named and the development of sporadic renal cell cancer (RCC). Reintroduction of VHL into RCC cells lacking functional VHL [VHL(?)] can suppress their growth in nude mice, but not under standard tissue culture conditions. To examine the hypothesis that the tumor suppressor function of VHL requires signaling through contact with extracellular matrix (ECM), 786-O VHL(?) RCC cells and isogenic sublines stably expressing VHL gene products [VHL(+)] were grown on ECMs. Cell-cell and cell-ECM signalings were required to elicit VHL-dependent differences in growth and differentiation. VHL(+) cells differentiated into organized epithelial sheets, whereas VHL(?) cells were branched and disorganized. VHL(+) cells grown to high density on collagen I underwent growth arrest, whereas VHL(?) cells continued to proliferate. Integrin levels were up-regulated in VHL(?) cells, and cell adhesion was down-regulated in VHL(+) cells during growth at high cell density. Hepatocyte nuclear factor 1α, a transcription factor and global activator of proximal tubule-specific genes in the nephron, was markedly up-regulated in VHL(+) cells grown at high cell density. These data indicate that VHL can induce renal cell differentiation and mediate growth arrest through integration of cell-cell and cell-ECM signals.
机译:von Hippel-Lindau(VHL)基因的突变与家庭癌症综合症有关(该基因被命名为该病)以及零星的肾细胞癌(RCC)的发展。将VHL重新引入缺乏功能性VHL [VHL(?)]的RCC细胞中可以抑制其在裸鼠中的生长,但不能在标准组织培养条件下抑制其生长。为了检验VHL的肿瘤抑制功能需要通过与细胞外基质(ECM)接触来发出信号的假设,在ECM上生长了786-O VHL(α)RCC细胞和稳定表达VHL基因产物[VHL(+)]的等基因亚系。细胞-细胞和细胞-ECM信号传导是引起生长和分化中依赖VHL的差异所必需的。 VHL(+)细胞分化成有组织的上皮层,而VHL(?)细胞则分支并杂乱无章。在胶原蛋白I上高密度生长的VHL(+)细胞经历了生长停滞,而VHL(?)细胞则继续增殖。在高细胞密度下生长期间,VHL(α)细胞中的整联蛋白水平上调,而VHL(+)细胞中的细胞粘附性下调。肝细胞核因子1α是肾单位中近端小管特异性基因的转录因子和全局激活因子,在高细胞密度生长的VHL(+)细胞中明显上调。这些数据表明,VHL可通过细胞-细胞和细胞-ECM信号的整合诱导肾细胞分化并介导生长停滞。

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