Barrionuevo Francisco, Burgos Miguel, Jiménez Rafael
Biomol Concepts. 2011 Dec 1;2(6):537-47. doi: 10.1515/BMC.2011.044.
In the adult testis, Sertoli cells (SCs) are the epithelial supporting cells of the seminiferous tubules that provide germ cells (GCs) with the required nutrients and structural and regulatory support to complete spermatogenesis. SCs also form the blood-testis barrier, phagocytose apoptotic spermatocytes and cell debris derived from spermiogenesis, and produce and secrete numerous paracrine and endocrine signals involved in different regulatory processes. In addition to their essential functions in the adult testis, SCs play a pivotal role during testis development. They are the first cells to differentiate in the embryonic XY gonadal primordium and are involved in the regulation of testis-specific differentiation processes, such as prevention of GC entry into meiosis, Leydig and peritubular myoid cell differentiation, and regression of the Müllerian duct, the anlagen of the uterus, oviducts, and the upper part of the vagina. Expression of the Y-linked gene SRY in pre-SCs initiates a genetic cascade that leads to SC differentiation and subsequently to testis development. Since the identification of the SRY gene, many Sertoli-specific transcription factors and signals underlying the molecular mechanisms of early testis differentiation have been identified. Here, we review the state of the art of the molecular interactions that commit the supporting cell lineage of the gonadal primordium to differentiate as SCs and the subsequent Sertoli-specific signaling pathways involved in early testis differentiation.
在成年睾丸中,支持细胞(SCs)是生精小管的上皮支持细胞,为生殖细胞(GCs)提供完成精子发生所需的营养物质以及结构和调节支持。支持细胞还形成血睾屏障,吞噬凋亡的精母细胞和精子形成过程中产生的细胞碎片,并产生和分泌参与不同调节过程的众多旁分泌和内分泌信号。除了在成年睾丸中的重要功能外,支持细胞在睾丸发育过程中也起着关键作用。它们是胚胎XY性腺原基中最早分化的细胞,并参与睾丸特异性分化过程的调节,如防止生殖细胞进入减数分裂、睾丸间质细胞和睾丸周肌样细胞的分化,以及苗勒管(子宫、输卵管和阴道上部的原基)的退化。Y连锁基因SRY在支持前体细胞中的表达启动了一个基因级联反应,导致支持细胞分化,随后促进睾丸发育。自SRY基因被鉴定以来,许多支持细胞特异性转录因子以及早期睾丸分化分子机制背后的信号已被确定。在此,我们综述了使性腺原基的支持细胞谱系分化为支持细胞的分子相互作用以及早期睾丸分化中随后涉及的支持细胞特异性信号通路的最新研究进展。