vHNF1 在不同的调节回路中发挥作用,以控制输尿管芽分支和早期肾发生。

vHNF1 functions in distinct regulatory circuits to control ureteric bud branching and early nephrogenesis.

机构信息

UMR7622-CNRS-Université Pierre et Marie Curie, 9 quai St. Bernard Bât. C, 75005 Paris, France.

出版信息

Development. 2010 Jan;137(2):347-57. doi: 10.1242/dev.042226.

Abstract

Mouse metanephric kidney development begins with the induction of the ureteric bud (UB) from the caudal portion of the Wolffian duct by metanephric mesenchymal signals. While the UB undergoes branching morphogenesis to generate the entire urinary collecting system and the ureter, factors secreted by the UB tips induce surrounding mesenchymal cells to convert into epithelia and form the nephrons, the functional units of the kidney. Epithelial branching morphogenesis and nephrogenesis are therefore tightly orchestrated; defects in either of these processes lead to severe kidney phenotypes ranging from hypoplasia to complete aplasia. However, the underlying regulatory networks have been only partially elucidated. Here, we identify the transcription factor vHNF1 (HNF1beta) as a crucial regulator of these early developmental events. Initially involved in timing outgrowth of the UB and subsequent branching, vHNF1 is also required for nephric duct epithelial maintenance, Müllerian duct formation and early nephrogenesis. Mosaic analyses further suggest a cell-autonomous requirement for vHNF1 in the acquisition of a specialized tip domain and branching morphogenesis. vHNF1 exerts these intricate functions at least in part through the direct control of key regulatory molecules involved in different aspects of early kidney development. Notably, vHNF1 acting directly upstream of Wnt9b appears to orchestrate Wnt signaling action in the mesenchymal-epithelial transitions underlying the initiation of nephrogenesis. These results demonstrate that vHNF1 is an essential transcriptional regulator that, in addition to the known later functions in normal duct morphogenesis, plays a crucial role during the earliest stages of urogenital development and provide novel insights into the regulatory circuits controlling events.

摘要

小鼠后肾原基发育始于输尿管芽(UB)从沃尔夫管的尾部诱导,由后肾间充质信号诱导。UB 经历分支形态发生,生成整个尿收集系统和输尿管,而 UB 尖端分泌的因子诱导周围间充质细胞转化为上皮细胞,形成肾单位,这是肾脏的功能单位。因此,上皮分支形态发生和肾发生是紧密协调的;这些过程中的任何缺陷都会导致严重的肾脏表型,从发育不全到完全缺如。然而,这些过程背后的调控网络仅部分阐明。在这里,我们鉴定转录因子 vHNF1(HNF1β)作为这些早期发育事件的关键调控因子。vHNF1 最初参与 UB 的生长和随后的分支,还需要维持肾管上皮、缪勒管形成和早期肾发生。嵌合体分析进一步表明 vHNF1 在获得专门的尖端结构域和分支形态发生中具有细胞自主的要求。vHNF1 至少通过直接控制参与早期肾脏发育不同方面的关键调节分子来发挥这些复杂的功能。值得注意的是,vHNF1 似乎直接在上游作用于 Wnt9b,以协调肾发生中起始的间质上皮转化中的 Wnt 信号作用。这些结果表明 vHNF1 是一种必需的转录调节因子,除了已知的在正常导管形态发生中的后期功能外,在泌尿生殖系统发育的最早阶段发挥关键作用,并为控制事件的调控回路提供了新的见解。

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