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Canonical Wnt9b signaling balances progenitor cell expansion and differentiation during kidney development

机译:典型的Wnt9b信号传导在肾脏发育过程中平衡祖细胞的扩增和分化

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摘要

The mammalian kidney is composed of thousands of individual epithelial tubules known as nephrons. Deficits in nephron number are associated with myriad diseases ranging from complete organ failure to congenital hypertension. A balance between differentiation and maintenance of a mesenchymal progenitor cell population determines the final number of nephrons. How this balance is struck is poorly understood. Previous studies have suggested that Wnt9b/β-catenin signaling induced differentiation (mesenchymal-to-epithelial transition) in a subset of the progenitors but needed to be repressed in the remaining progenitors to keep them in the undifferentiated state. Here, we report that Wnt9b/β-catenin signaling is active in the progenitors and is required for their renewal/proliferation. Using a combination of approaches, we have revealed a mechanism through which cells receiving the same Wnt9b/β-catenin signal can respond in distinct ways (proliferate versus differentiate) depending on the cellular environment in which the signal is received. Interpretation of the signal is dependent, at least in part, on the activity of the transcription factor Six2. Six2-positive cells that receive the Wnt9b signal are maintained as progenitors whereas cells with reduced levels of Six2 are induced to differentiate by Wnt9b. Using this simple mechanism, the kidney is able to balance progenitor cell expansion and differentiation insuring proper nephron endowment. These findings provide novel insights into the molecular mechanisms that regulate progenitor cell differentiation during normal and pathological conditions.
机译:哺乳动物的肾脏由成千上万个称为肾单位的上皮小管组成。肾单位数目不足与无数疾病相关,从完全器官衰竭到先天性高血压。间充质祖细胞群的分化和维持之间的平衡决定了肾单位的最终数目。人们对如何达到这种平衡还知之甚少。先前的研究表明,Wnt9b /β-catenin信号传导可在一部分祖细胞中诱导分化(间质至上皮转化),但需要在其余祖细胞中加以抑制,以使其保持未分化状态。在这里,我们报告Wnt9b /β-catenin信号在祖细胞中活跃,是其更新/增殖所必需的。使用多种方法的结合,我们揭示了一种机制,通过该机制,接收相同Wnt9b /β-catenin信号的细胞可以根据接收信号的细胞环境以不同的方式(增殖与分化)响应。信号的解释至少部分取决于转录因子Six2的活性。接收到Wnt9b信号的Six2-阳性细胞被保持为祖细胞,而具有降低的Six2水平的细胞被Wnt9b诱导分化。使用这种简单的机制,肾脏能够平衡祖细胞的扩增和分化,从而确保适当的肾单位end赋。这些发现为正常和病理条件下调节祖细胞分化的分子机制提供了新颖的见解。

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