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Sox9 杂合缺失的小鼠模拟了与人类 Camptocormia 发育不良相关的性腺性别反转表型。

Heterozygous deletion of Sox9 in mouse mimics the gonadal sex reversal phenotype associated with campomelic dysplasia in humans.

机构信息

Department of Anatomy and Neuroscience, The University of Melbourne, Parkville, VIC 3010, Australia.

Murdoch Children's Research Institute, Royal Children's Hospital, Melbourne, VIC 3052, Australia.

出版信息

Hum Mol Genet. 2021 Feb 4;29(23):3781-3792. doi: 10.1093/hmg/ddaa259.

DOI:10.1093/hmg/ddaa259
PMID:33305798
Abstract

Heterozygous mutations in the human SOX9 gene cause the skeletal malformation syndrome campomelic dysplasia which in 75% of 46, XY individuals is associated with male-to-female sex reversal. Although studies in homozygous Sox9 knockout mouse models confirmed that SOX9 is critical for testis development, mice heterozygous for the Sox9-null allele were reported to develop normal testes. This led to the belief that the SOX9 dosage requirement for testis differentiation is different between humans, which often require both alleles, and mice, in which one allele is sufficient. However, in prior studies, gonadal phenotypes in heterozygous Sox9 XY mice were assessed only by either gross morphology, histological staining or analyzed on a mixed genetic background. In this study, we conditionally inactivated Sox9 in somatic cells of developing gonads using the Nr5a1-Cre mouse line on a pure C57BL/6 genetic background. Section and whole-mount immunofluorescence for testicular and ovarian markers showed that XY Sox9 heterozygous gonads developed as ovotestes. Quantitative droplet digital PCR confirmed a 50% reduction of Sox9 mRNA as well as partial sex reversal shown by an upregulation of ovarian genes. Our data show that haploinsufficiency of Sox9 can perturb testis development in mice, suggesting that mice may provide a more accurate model of human disorders/differences of sex development than previously thought.

摘要

人类 SOX9 基因的杂合突变导致骨骼畸形综合征 campomelic 发育不良,在 75%的 46,XY 个体中与男性到女性的性别反转有关。尽管在纯合 Sox9 敲除小鼠模型中的研究证实 SOX9 对睾丸发育至关重要,但报道称 Sox9 缺失等位基因杂合的小鼠会发育出正常的睾丸。这导致人们相信 SOX9 对睾丸分化的剂量要求在人类和小鼠之间存在差异,人类通常需要两个等位基因,而小鼠则只需要一个等位基因。然而,在之前的研究中,杂合 Sox9 XY 小鼠的性腺表型仅通过大体形态、组织学染色或在混合遗传背景下进行分析来评估。在这项研究中,我们使用 Nr5a1-Cre 小鼠系在纯 C57BL/6 遗传背景下对发育中的性腺中的体细胞进行 Sox9 条件性失活。睾丸和卵巢标记物的切片和全器官免疫荧光显示,XY Sox9 杂合性腺发育为卵睾。定量数字 PCR 证实 Sox9 mRNA 减少了 50%,并且卵巢基因的上调显示出部分性别反转。我们的数据表明 Sox9 的杂合不足会干扰小鼠的睾丸发育,这表明与之前的想法相比,小鼠可能为人类疾病/性别发育差异提供了更准确的模型。

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