Center for Molecular Medicine, Maine Medical Center Research Institute, 81 Research Drive, Scarborough, ME 04074, USA.
Development. 2014 Jan;141(1):17-27. doi: 10.1242/dev.089078. Epub 2013 Nov 27.
Forkhead transcription factors are essential for diverse processes in early embryonic development and organogenesis. Foxd1 is required during kidney development and its inactivation results in failure of nephron progenitor cell differentiation. Foxd1 is expressed in interstitial cells adjacent to nephron progenitor cells, suggesting an essential role for the progenitor cell niche in nephrogenesis. To better understand how cortical interstitial cells in general, and FOXD1 in particular, influence the progenitor cell niche, we examined the differentiation states of two progenitor cell subtypes in Foxd1(-/-) tissue. We found that although nephron progenitor cells are retained in a primitive CITED1-expressing compartment, cortical interstitial cells prematurely differentiate. To identify pathways regulated by FOXD1, we screened for target genes by comparison of Foxd1 null and wild-type tissues. We found that the gene encoding the small leucine-rich proteoglycan decorin (DCN) is repressed by FOXD1 in cortical interstitial cells, and we show that compound genetic inactivation of Dcn partially rescues the failure of progenitor cell differentiation in the Foxd1 null. We demonstrate that DCN antagonizes BMP/SMAD signaling, which is required for the transition of CITED1-expressing nephron progenitor cells to a state that is primed for WNT-induced epithelial differentiation. On the basis of these studies, we propose a mechanism for progenitor cell retention in the Foxd1 null in which misexpressed DCN produced by prematurely differentiated interstitial cells accumulates in the extracellular matrix, inhibiting BMP7-mediated transition of nephron progenitor cells to a compartment in which they can respond to epithelial induction signals.
叉头转录因子在早期胚胎发育和器官发生过程中对于多种过程是必需的。Foxd1 在肾脏发育过程中是必需的,其失活导致肾祖细胞分化失败。Foxd1 在肾祖细胞相邻的间质细胞中表达,提示祖细胞龛在肾发生中的重要作用。为了更好地理解皮质间质细胞(尤其是 FOXD1)如何影响祖细胞龛,我们检查了 Foxd1(-/-)组织中两种祖细胞亚型的分化状态。我们发现,尽管肾祖细胞保留在原始 CITED1 表达的隔室中,但皮质间质细胞过早分化。为了鉴定 FOXD1 调节的途径,我们通过比较 Foxd1 缺失和野生型组织筛选靶基因。我们发现,编码小富含亮氨酸的蛋白聚糖 decorin (DCN) 的基因在皮质间质细胞中被 FOXD1 抑制,我们表明 Dcn 的复合遗传失活部分挽救了 Foxd1 缺失中祖细胞分化的失败。我们证明 DCN 拮抗 BMP/SMAD 信号,该信号对于从表达 CITED1 的肾祖细胞向 WNT 诱导的上皮分化状态的过渡是必需的。基于这些研究,我们提出了 Foxd1 缺失中祖细胞保留的机制,其中过早分化的间质细胞中错误表达的 DCN 积累在细胞外基质中,抑制 BMP7 介导的肾祖细胞向可响应上皮诱导信号的隔室的过渡。