Kay Raissa G G, Reeves Richard, Siggers Pam, Greenaway Simon, Mallon Ann-Marie, Wells Sara, Koo Bon-Kyoung, Mayère Chloé, Nef Serge, Greenfield Andy, Simon Michelle M
MRC Mammalian Genetics Unit, MRC Harwell Institute, Didcot, Oxfordshire OX11 0RD, UK.
Mary Lyon Centre at MRC Harwell, Didcot, Oxfordshire OX11 0RD, UK.
Development. 2024 Dec 1;151(23). doi: 10.1242/dev.202707. Epub 2024 Dec 4.
The role of anti-WNT ZNRF3 is central to determining gonadal fate: XY mice lacking functional ZNRF3 exhibit a highly variable gonadal sex reversal phenotype in the fetal period, characterised by appearance of ovarian tissue. To investigate this sex reversal further, we used single-cell RNA-seq to examine the transcriptomes of XY Znrf3-deficient gonads during the mouse sex-determining period. Analyses of cell trajectories in mutant gonads reveal the failure of pre-supporting cells to commit to the Sertoli cell fate, XY granulosa cell development, unstable commitment in those cells that reach the Sertoli path and enhanced contribution to a supporting-like cell fate. By developing a machine learning-based score for transcriptomic similarity to Sertoli and granulosa, we show pervasive disruption to acquisition of testicular cell fate in the mutant supporting cell lineage, with large numbers of cells co-expressing pro-Sertoli and pro-granulosa markers. These data reveal that loss of Znrf3 results in transcriptomic and cellular heterogeneity, with shifts in cellular sex identity that undermine a simple binary model in which mutant supporting cell precursors achieve either Sertoli or granulosa cell differentiation.
抗WNT蛋白ZNRF3的作用对于确定性腺命运至关重要:缺乏功能性ZNRF3的XY小鼠在胎儿期表现出高度可变的性腺性反转表型,其特征是出现卵巢组织。为了进一步研究这种性反转,我们使用单细胞RNA测序来检查小鼠性别决定期XY Znrf3缺陷性腺的转录组。对突变性腺中细胞轨迹的分析揭示了前支持细胞未能定向分化为支持细胞命运、XY颗粒细胞发育、那些走上支持细胞分化路径的细胞的不稳定定向分化以及对支持样细胞命运的增强贡献。通过开发一种基于机器学习的与支持细胞和颗粒细胞转录组相似性的评分方法,我们发现突变支持细胞谱系中睾丸细胞命运的获得普遍受到干扰,大量细胞同时表达支持细胞和颗粒细胞的前体标志物。这些数据表明Znrf3的缺失导致转录组和细胞异质性,细胞性别身份发生转变,这破坏了一个简单的二元模型,即突变支持细胞前体要么分化为支持细胞,要么分化为颗粒细胞。