Reproductive Development, Murdoch Children's Research Institute, Melbourne, Victoria, Australia.
Department of Paediatrics, University of Melbourne, Melbourne, Victoria, Australia.
Sex Dev. 2022;16(2-3):80-91. doi: 10.1159/000524453. Epub 2022 Jun 27.
SOX genesare master regulatory genes controlling development and are fundamental to the establishment of sex determination in a multitude of organisms. The discovery of the master sex-determining gene SRY in 1990 was pivotal for the understanding of how testis development is initiated in mammals. With this discovery, an entire family of SOX factors were uncovered that play crucial roles in cell fate decisions during development. The importance of SOX genes in human reproductive development is evident from the various disorders of sex development (DSD) upon loss or overexpression of SOX gene function. Here, we review the roles that SOX genes play in gonad development and their involvement in DSD. We start with an overview of sex determination and differentiation, DSDs, and the SOX gene family and function. We then provide detailed information and discussion on SOX genes that have been implicated in DSDs, both at the gene and regulatory level. These include SRY, SOX9, SOX3, SOX8, and SOX10. This review provides insights on the crucial balance of SOX gene expression levels needed for gonad development and maintenance and how changes in these levels can lead to DSDs.
SOX 基因是控制发育的主调控基因,对多种生物的性别决定建立具有重要意义。1990 年,主性别决定基因 SRY 的发现对于理解哺乳动物睾丸发育的启动机制至关重要。随着这一发现,人们揭示了一整类 SOX 因子,它们在发育过程中的细胞命运决定中发挥着关键作用。SOX 基因在人类生殖发育中的重要性从性别发育障碍(DSD)的各种病症中显而易见,这些病症是由于 SOX 基因功能的缺失或过表达引起的。在这里,我们回顾了 SOX 基因在性腺发育中的作用及其在 DSD 中的参与。我们首先概述性别决定和分化、DSD 以及 SOX 基因家族和功能。然后,我们提供了在 DSD 中涉及的 SOX 基因的详细信息和讨论,包括 SRY、SOX9、SOX3、SOX8 和 SOX10。这篇综述提供了关于 SOX 基因表达水平对性腺发育和维持所必需的关键平衡的见解,以及这些水平的变化如何导致 DSD。