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Pax-2控制泌尿生殖系统发育的多个步骤。

Pax-2 controls multiple steps of urogenital development.

作者信息

Torres M, Gómez-Pardo E, Dressler G R, Gruss P

机构信息

Abteilung Molekulare Zellbiologie, Max-Planck-Institut für Biophysikalische Chemie, Göttingen, Germany.

出版信息

Development. 1995 Dec;121(12):4057-65. doi: 10.1242/dev.121.12.4057.

Abstract

Urogenital system development in mammals requires the coordinated differentiation of two distinct tissues, the ductal epithelium and the nephrogenic mesenchyme, both derived from the intermediate mesoderm of the early embryo. The former give rise to the genital tracts, ureters and kidney collecting duct system, whereas mesenchymal components undergo epithelial transformation to form nephrons in both the mesonephric (embryonic) and metanephric (definitive) kidney. Pax-2 is a transcriptional regulator of the paired-box family and is widely expressed during the development of both ductal and mesenchymal components of the urogenital system. We report here that Pax-2 homozygous mutant newborn mice lack kidneys, ureters and genital tracts. We attribute these defects to dysgenesis of both ductal and mesenchymal components of the developing urogenital system. The Wolffian and Müllerian ducts, precursors of male and female genital tracts, respectively, develop only partially and degenerate during embryogenesis. The ureters, inducers of the metanephros are absent and therefore kidney development does not take place. Mesenchyme of the nephrogenic cord fails to undergo epithelial transformation and is not able to form tubules in the mesonephros. In addition, we show that the expression of specific markers for each of these components is de-regulated in Pax-2 mutants. These data show that Pax-2 is required for multiple steps during the differentiation of intermediate mesoderm. In addition, Pax-2 mouse mutants provide an animal model for human hereditary kidney diseases.

摘要

哺乳动物的泌尿生殖系统发育需要两种不同组织——导管上皮和肾源性间充质——的协调分化,这两种组织均起源于早期胚胎的中间中胚层。前者发育为生殖道、输尿管和肾集合管系统,而间充质成分经历上皮转化,在中肾(胚胎期)和后肾(成体)中形成肾单位。Pax-2是配对盒家族的转录调节因子,在泌尿生殖系统的导管和间充质成分发育过程中广泛表达。我们在此报告,Pax-2纯合突变新生小鼠缺乏肾脏、输尿管和生殖道。我们将这些缺陷归因于发育中的泌尿生殖系统导管和间充质成分的发育不全。分别作为雄性和雌性生殖道前体的沃尔夫管和缪勒管仅部分发育,并在胚胎发生过程中退化。作为后肾诱导物的输尿管缺失,因此肾脏发育无法进行。肾源性索的间充质不能进行上皮转化,无法在中肾中形成肾小管。此外,我们还表明,这些成分各自的特异性标志物在Pax-2突变体中的表达失调。这些数据表明,Pax-2在中间中胚层分化的多个步骤中是必需的。此外,Pax-2小鼠突变体为人类遗传性肾脏疾病提供了一种动物模型。

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