| Literature DB >> 32886743 |
Yi-Han Li1, Tsung-Ming Chen2, Bu-Miin Huang1,3, Shang-Hsun Yang1,4, Chia-Ching Wu1,3, Yung-Ming Lin5, Jih-Ing Chuang1,4, Shaw-Jenq Tsai1,4, H Sunny Sun1,6.
Abstract
Fibroblast growth factor 9 (FGF9) is an autocrine/paracrine growth factor that plays critical roles in embryonic and organ developments and is involved in diverse physiological events. Loss of function of FGF9 exhibits male-to-female sex reversal in the transgenic mouse model and gain of FGF9 copy number was found in human 46, XX sex reversal patient with disorders of sex development. These results suggested that FGF9 plays a vital role in male sex development. Nevertheless, how FGF9/Fgf9 expression is regulated during testis determination remains unclear. In this study, we demonstrated that human and mouse SRY bind to -833 to -821 of human FGF9 and -1010 to -998 of mouse Fgf9, respectively, and control FGF9/Fgf9 mRNA expression. Interestingly, we showed that mouse SRY cooperates with SF1 to regulate Fgf9 expression, whereas human SRY-mediated FGF9 expression is SF1 independent. Furthermore, using an ex vivo gonadal culture system, we showed that FGF9 expression is sufficient to switch cell fate from female to male sex development in 12-16 tail somite XX mouse gonads. Taken together, our findings provide evidence to support the SRY-dependent, fate-determining role of FGF9 in male sex development.Entities:
Keywords: gene regulation; growth factors; human reproduction; male sexual function; sex determination; sex differentiation; testis; transcriptional regulation
Year: 2020 PMID: 32886743 DOI: 10.1093/biolre/ioaa154
Source DB: PubMed Journal: Biol Reprod ISSN: 0006-3363 Impact factor: 4.285