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UG4 增强子驱动的 GATA-2 和骨形态发生蛋白 4 互补纠正 Gata2 功能缺失突变小鼠的 CAKUT 表型。

UG4 enhancer-driven GATA-2 and bone morphogenetic protein 4 complementation remedies the CAKUT phenotype in Gata2 hypomorphic mutant mice.

机构信息

Department of Medical Biochemistry, Tohoku University Graduate School of Medicine, Sendai, Japan.

出版信息

Mol Cell Biol. 2012 Jun;32(12):2312-22. doi: 10.1128/MCB.06699-11. Epub 2012 Apr 9.

Abstract

During renal development, the proper emergence of the ureteric bud (UB) from the Wolffian duct is essential for formation of the urinary system. Previously, we showed that expression of transcription factor GATA-2 in the urogenital primordium was demarcated anteroposteriorly into two domains that were regulated by separate enhancers. While GATA-2 expression in the caudal urogenital mesenchyme is controlled by the UG4 enhancer, its more-rostral expression is regulated by UG2. We found that anteriorly displaced budding led to obstructed megaureters in Gata2 hypomorphic mutant mice, possibly due to reduced expression of the downstream effector bone morphogenetic protein 4 (BMP4). Here, we report that UG4-driven, but not UG2-driven, GATA-2 expression in the urogenital mesenchyme significantly reverts the uropathy observed in the Gata2 hypomorphic mutant mice. Furthermore, the data show that transgenic rescue by GATA-2 reverses the rostral outgrowth of the UB. We also provide evidence for a GATA-2-BMP4 epistatic relationship by demonstrating that reporter gene expression from a Bmp4 bacterial artificial chromosome (BAC) transgene is altered in Gata2 hypomorphs; furthermore, UG4-directed BMP4 expression in the mutants leads to reduced incidence of megaureters. These results demonstrate that GATA-2 expression in the caudal urogenital mesenchyme as directed by the UG4 enhancer is crucial for proper development of the urinary tract and that its regulation of BMP4 expression is a critical aspect of this function.

摘要

在肾脏发育过程中,输尿管芽(UB)从沃尔夫管正确出现对于泌尿系统的形成至关重要。此前,我们表明,生殖泌尿原基中转录因子 GATA-2 的表达从前到后被划分为两个区域,由单独的增强子调控。虽然尾侧尿生殖中胚层中的 GATA-2 表达受 UG4 增强子控制,但更靠前的表达受 UG2 调控。我们发现,向前移位的萌芽导致 Gata2 功能不全突变小鼠的巨输尿管阻塞,可能是由于下游效应物骨形态发生蛋白 4(BMP4)的表达减少。在这里,我们报告说,UG4 驱动但不是 UG2 驱动的尿生殖中胚层中的 GATA-2 表达显著逆转了 Gata2 功能不全突变小鼠中观察到的尿路上皮病变。此外,数据表明,GATA-2 的转基因挽救逆转了 UB 的前向生长。我们还通过证明 Bmp4 细菌人工染色体(BAC)转基因的报告基因表达在 Gata2 功能不全突变体中发生改变,提供了 GATA-2-BMP4 上位性关系的证据;此外,UG4 指导的 BMP4 表达在突变体中导致巨输尿管的发生率降低。这些结果表明,UG4 增强子指导的尾侧尿生殖中胚层中的 GATA-2 表达对于泌尿道的正常发育至关重要,其对 BMP4 表达的调节是其功能的一个关键方面。

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