A conserved regulatory atlas reveals enhancers critical for mouse and human gonadal development

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Abstract

Differences of Sex Development (DSD) are congenital conditions where sex development is atypical. Like many other rare conditions, genetic diagnostic rates for DSD still sit below 50%. Unexplained cases may harbour disruptions in non-coding regulatory regions, which remain largely unexplored. Here, we integrate chromatin accessibility datasets from mouse and human embryonic gonads to construct a complete comparative regulatory atlas of gonad development. Using this resource, we identified a conserved upstream enhancer of the key gene, Wt1 . We identify rare variants in this enhancer in eight individuals with DSD and demonstrate that its deletion in mice results in XY male-to-female sex reversal and XX sub-fertility, thereby establishing it as critical for gonadal development. We build on this atlas to create a tissue-specific computational filtration pipeline to prioritise non-coding variants in whole-genome sequencing datasets from 74 undiagnosed individuals with DSD. This dramatically reduces millions of potential candidates to a small set of candidate variants. This led to identification of a variant that disrupts the activity a conserved enhancer upstream of NR5A1 which segregates with gonadal dysgenesis in a family. Our study reveals regulatory elements essential for gonadal development and provides a framework for uncovering pathogenic non-coding variants in other rare developmental conditions.

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