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Wnt信号应答细胞对小鼠生殖道形成的发育贡献

Developmental Contribution of Wnt-signal-responsive Cells to Mouse Reproductive Tract Formation.

作者信息

Haraguchi Ryuma, Kitazawa Riko, Murashima Aki, Yamada Gen, Kitazawa Sohei

机构信息

Department of Molecular Pathology, Ehime University Graduate School of Medicine, Shitsukawa, Toon City, Ehime 791-0295, Japan.

Department of Diagnostic Pathology, Ehime University Hospital, Shitsukawa, Toon City, Ehime 791-0295, Japan.

出版信息

Acta Histochem Cytochem. 2017 Aug 25;50(4):127-133. doi: 10.1267/ahc.17017. Epub 2017 Aug 10.

Abstract

In mammals, the müllerian duct (MD) is an embryonic tubular structure that gives rise to the female reproductive tract (FRT). The MD originates from the coelomic epithelium (CoE) and takes on a rostral to caudal shape to establish the primary structure of the FRT under the regulation of morphogenetic signals. During these developmental processes, the MD and its derivatives require proper regulation of the Wnt-signaling-pathway. Here, to investigate the developmental contribution of FRT primordia under the influence of the Wnt-signaling, genetic lineage tracing was carried out using TopCreER/Rosa-LacZ mice to follow the fate of Wnt-signal-responsive cells during reproductive tract formation. TopCreER-marked-LacZ+ cells, arising from the Wnt-signal-responsive progenitors in CoE, give rise to spatially restricted MD and the uterine luminal epithelium. Similarly, the progeny from LacZ+ mesenchymal cells surrounding the MD contribute to both the uterine smooth muscle and stroma. Furthermore, in males, the Wnt-signal-responsive MD mesenchyme develops into the epididymis. These results show, for the first time, evidence of the sequential involvement of reproductive tract progenitors under the influence of Wnt-signal throughout the developmental term. This study provides a precise outline for assessing the lineage relation between the reproductive tract and the cell fate of its primordia in a temporally regulated manner.

摘要

在哺乳动物中,苗勒管(MD)是一种胚胎期管状结构,可发育为雌性生殖道(FRT)。苗勒管起源于体腔上皮(CoE),呈头端到尾端的形态,在形态发生信号的调控下建立雌性生殖道的主要结构。在这些发育过程中,苗勒管及其衍生物需要对Wnt信号通路进行适当调控。在此,为了研究在Wnt信号影响下雌性生殖道原基的发育贡献,利用TopCreER/Rosa-LacZ小鼠进行了遗传谱系追踪,以追踪生殖道形成过程中Wnt信号响应细胞的命运。源自体腔上皮中Wnt信号响应祖细胞的TopCreER标记的LacZ+细胞,发育为空间受限的苗勒管和子宫腔上皮。同样,围绕苗勒管的LacZ+间充质细胞的后代对子宫平滑肌和基质都有贡献。此外,在雄性中,Wnt信号响应的苗勒管间充质发育为附睾。这些结果首次显示了在整个发育过程中Wnt信号影响下生殖道祖细胞依次参与的证据。本研究提供了一个精确的概述,用于以时间调控的方式评估生殖道与其原基细胞命运之间的谱系关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/901f/5593815/375e1f9b4e0d/AHC17017f01.jpg

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