Alcantara Mellissa C, Suzuki Kentaro, Acebedo Alvin R, Sakamoto Yuki, Nishita Michiru, Minami Yasuhiro, Kikuchi Akira, Yamada Gen
Department of Developmental Genetics, Institute of Advanced Medicine, Wakayama Medical University, Wakayama, Japan.
Department of Biochemistry, School of Medicine, Fukushima Medical University, Fukushima, Japan.
Congenit Anom (Kyoto). 2021 Nov;61(6):212-219. doi: 10.1111/cga.12438. Epub 2021 Jul 21.
External genitalia development in mice involves multiple developmental processes under the regulation of various signaling pathways. Wnt5a, one of the major Wnt ligands, is a crucial developmental regulator of outgrowing organs such as the limb, the mandible, and the external genitalia. Defects in Wnt5a signaling have been linked to Robinow syndrome, a genetic disorder in which male patients manifest a micropenis and defective urethral tube formation. Whereas Wnt5a is required for cell proliferation during embryonic external genitalia outgrowth, its role for urethral tube formation has yet to be understood. Here, we show that Wnt5a contributes to urethral tube formation as well as external genitalia outgrowth. Wnt5a is expressed in the embryonic external genitalia mesenchyme, and mesenchymal-specific conditional Wnt5a knockout mice resulted in hypospadias-like urethral defects. Early deletion of Wnt5a at E10.5 showed severe defects in both external genitalia outgrowth and urethral tube formation, along with reduced cell proliferation. The severe urethral tube defect persisted during later timing deletion of Wnt5a (E13.5). Further analyses revealed that loss of Wnt5a disrupted cell polarity and led to a reduction of the phosphorylated myosin light chain and the focal adhesion protein, vinculin. Altogether, these results suggest that Wnt5a coordinates cell proliferation and directed cell migration in a stage-dependent manner during male external genitalia development. Furthermore, Wnt5a may regulate cell polarity, focal adhesion formation, and cell contractility, leading to directed cell migration during male-type urethral formation in a manner that has not been reported in other organ fusion events.
小鼠的外生殖器发育涉及多种发育过程,受各种信号通路的调控。Wnt5a是主要的Wnt配体之一,是肢体、下颌骨和外生殖器等生长器官的关键发育调节因子。Wnt5a信号通路的缺陷与Robinow综合征有关,这是一种遗传性疾病,男性患者表现为小阴茎和尿道管形成缺陷。虽然Wnt5a在胚胎外生殖器生长过程中对细胞增殖是必需的,但其在尿道管形成中的作用尚不清楚。在这里,我们表明Wnt5a有助于尿道管形成以及外生殖器生长。Wnt5a在胚胎外生殖器间充质中表达,间充质特异性条件性Wnt5a基因敲除小鼠导致尿道下裂样尿道缺陷。在E10.5时早期缺失Wnt5a显示外生殖器生长和尿道管形成均有严重缺陷,同时细胞增殖减少。在Wnt5a后期缺失(E13.5)时,严重的尿道管缺陷仍然存在。进一步分析表明,Wnt5a的缺失破坏了细胞极性,导致磷酸化肌球蛋白轻链和粘着斑蛋白纽蛋白减少。总之,这些结果表明Wnt5a在雄性外生殖器发育过程中以阶段依赖的方式协调细胞增殖和定向细胞迁移。此外,Wnt5a可能调节细胞极性、粘着斑形成和细胞收缩性,从而在雄性尿道形成过程中导致定向细胞迁移,其方式在其他器官融合事件中尚未见报道。