Endocrinology Division, Department of Endocrinology, Metabolism and Cardiovascular System, Section of Medicine, University of Fribourg, Fribourg, Switzerland,
Endocrinology Division, Department of Endocrinology, Metabolism and Cardiovascular System, Section of Medicine, University of Fribourg, Fribourg, Switzerland.
Sex Dev. 2022;16(2-3):162-170. doi: 10.1159/000522164. Epub 2022 Mar 9.
Sex development is an intricate and crucial process in all vertebrates that ensures the continued propagation of genetic diversity within a species, and ultimately their survival. Perturbations in this process can manifest as disorders/differences of sex development (DSD). Various transcriptional networks have been linked to development of the gonad into either male or female, which is actively driven by a set of genes that function in a juxtaposed manner and is maintained through the developmental stages to preserve the final sexual identity. One such identified gene is Chromobox homolog 2 (CBX2), an important ortholog of the Polycomb group (PcG) proteins, that functions as both chromatin modifier and highly dynamic transactivator. CBX2 was shown to be an essential factor for gonadal development in mammals, as genetic variants or loss-of-function of CBX2 can cause sex reversal in mice and humans. Here we will provide an overview of CBX2, its biological functions at molecular level, and the CBX2-dependent transcriptional landscape in gonadal development and DSD.
性发育是所有脊椎动物中一个复杂而关键的过程,它确保了物种内遗传多样性的持续传播,最终确保了它们的生存。这个过程中的干扰可能表现为性发育障碍/差异(DSD)。各种转录网络已被联系到性腺发育成男性或女性,这是由一组在并列方式下发挥作用的基因所驱动的,并且通过发育阶段来维持,以保持最终的性别身份。其中一个已确定的基因是 Chromobox 同源物 2(CBX2),它是 Polycomb 组(PcG)蛋白的一个重要同源物,既是染色质修饰物,又是高度动态的转录激活物。CBX2 被证明是哺乳动物性腺发育所必需的因素,因为 CBX2 的遗传变异或功能丧失可导致小鼠和人类的性别反转。在这里,我们将提供 CBX2 的概述,其在分子水平上的生物学功能,以及 CBX2 依赖性转录景观在性腺发育和 DSD 中的作用。