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Sertoli Cell Wt1 Regulates Peritubular Myoid Cell and Fetal Leydig Cell Differentiation during Fetal Testis Development

机译:胎儿睾丸发育过程中支持细胞Wt1调节周皮肌细胞和胎儿Leydig细胞分化。

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摘要

Sertoli cells play a significant role in regulating fetal testis compartmentalization to generate testis cords and interstitium during development. The Sertoli cell Wilms’ tumor 1 (Wt1) gene, which encodes ~24 zinc finger-containing transcription factors, is known to play a crucial role in fetal testis cord assembly and maintenance. However, whether Wt1 regulates fetal testis compartmentalization by modulating the development of peritubular myoid cells (PMCs) and/or fetal Leydig cells (FLCs) remains unknown. Using a Wt1-/flox; Amh-Cre mouse model by deleting Wt1 in Sertoli cells (Wt1SC-cKO) at embryonic day 14.5 (E14.5), Wt1 was found to regulate PMC and FLC development. Wt1 deletion in fetal testis Sertoli cells caused aberrant differentiation and proliferation of PMCs, FLCs and interstitial progenitor cells from embryo to newborn, leading to abnormal fetal testis interstitial development. Specifically, the expression of PMC marker genes α-Sma, Myh11 and Des, and interstitial progenitor cell marker gene Vcam1 were down-regulated, whereas FLC marker genes StAR, Cyp11a1, Cyp17a1 and Hsd3b1 were up-regulated, in neonatal Wt1SC-cKO testes. The ratio of PMC:FLC were also reduced in Wt1SC-cKO testes, concomitant with a down-regulation of Notch signaling molecules Jag 1, Notch 2, Notch 3, and Hes1 in neonatal Wt1SC-cKO testes, illustrating changes in the differentiation status of FLC from their interstitial progenitor cells during fetal testis development. In summary, Wt1 regulates the development of FLC and interstitial progenitor cell lineages through Notch signaling, and it also plays a role in PMC development. Collectively, these effects confer fetal testis compartmentalization.
机译:在发育过程中,支持细胞在调节胎儿睾丸区室化以产生睾丸索和间质中起重要作用。 Sertoli细胞Wilms的肿瘤1(Wt1)基因编码约24个含锌指的转录因子,在胎儿睾丸索的组装和维持中起着至关重要的作用。然而,Wt1是否通过调节肾小管周围肌样细胞(PMCs)和/或胎儿Leydig细胞(FLCs)的发育来调节胎儿睾丸区室化仍然未知。使用Wt1 -/ flox ; Amh-Cre小鼠模型通过在胚胎第14.5天(E14.5)删除Sertoli细胞中的Wt1(Wt1 SC-cKO ),发现Wt1调节PMC和FLC的发育。胎儿睾丸支持细胞中Wt1的缺失导致PMC,FLC和间质祖细胞从胚胎到新生的异常分化和增殖,导致胎儿睾丸间质发育异常。具体来说,PMC标记基因α-Sma,Myh11和Des以及间质祖细胞标记基因Vcam1的表达下调,而FLC标记基因StAR,Cyp11a1,Cyp17a1和 Hsd3b1 的表达上调,在新生儿 Wt1 SC-cKO 睾丸中。在 Wt1 SC-cKO 睾丸中PMC:FLC的比例也降低了,同时Notch信号分子 Jag 1 的下调,新生儿 Wt1 SC-cKO 睾丸中的 Notch 2 Notch 3 Hes1 ,说明了胎儿睾丸发育过程中FLC与间质祖细胞分化状态的变化。总之, Wt1 通过Notch信号调节FLC和间质祖细胞谱系的发育,并且在PMC的发育中也发挥着作用。总的来说,这些作用赋予胎儿睾丸分隔。

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