Institut de Génétique et de Biologie Moléculaire et Cellulaire, ILLKIRCH, France.
Centre National de la Recherche Scientifique, UMR7104, ILLKIRCH, France.
Sci Rep. 2016 Nov 25;6:37792. doi: 10.1038/srep37792.
NR5A1 is essential for the development and for the function of steroid producing glands of the reproductive system. Moreover, its misregulation is associated with endometriosis, which is the first cause of infertility in women. Hr39, the Drosophila ortholog of NR5A1, is expressed and required in the secretory cells of the spermatheca, the female exocrine gland that ensures fertility by secreting substances that attract and capacitate the spermatozoids. We here identify a direct regulator of Hr39 in the spermatheca: the Gcm transcription factor. Furthermore, lack of Gcm prevents the production of the secretory cells and leads to female sterility in Drosophila. Hr39 regulation by Gcm seems conserved in mammals and involves the modification of the DNA methylation profile of mNr5a1. This study identifies a new molecular pathway in female reproductive system development and suggests a role for hGCM in the progression of reproductive tract diseases in humans.
NR5A1 对于生殖系统中产生类固醇的腺体的发育和功能至关重要。此外,其失调与子宫内膜异位症有关,子宫内膜异位症是女性不孕的首要原因。果蝇 NR5A1 的同源物 Hr39 在生殖腺管的分泌细胞中表达并发挥作用,生殖腺管是一种外分泌腺,通过分泌吸引和使精子获能的物质来确保生育能力。我们在这里鉴定出了生殖腺管中 Hr39 的一个直接调控因子:Gcm 转录因子。此外,缺乏 Gcm 会阻止分泌细胞的产生,并导致果蝇不育。Gcm 对 Hr39 的调控在哺乳动物中似乎是保守的,并且涉及到 mNr5a1 的 DNA 甲基化模式的修饰。本研究鉴定了女性生殖系统发育的一个新的分子途径,并提示 hGCM 在人类生殖道疾病的进展中起作用。