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发育中的人类大脑皮层的性别差异与神经发育障碍的遗传风险相关。

Sex differences in the developing human cortex intersect with genetic risk of neurodevelopmental disorders.

作者信息

Hennick Kelsey, Sui Yang, Karunakaran Druha, Nicollela Ally, Leonard Rachel, Meyer-Schuman Rebecca, Berk-Rauch Hanna, Wang Tianyun, Chakravarti Aravinda, Zoghbi Huda Y, Eichler Evan E, Nowakowski Tomasz J

机构信息

Department of Neurological Surgery, University of California, San Francisco, CA 94143, USA.

Department of Anatomy, University of California, San Francisco, CA 94143, USA.

出版信息

bioRxiv. 2025 Sep 4:2025.09.04.674293. doi: 10.1101/2025.09.04.674293.

Abstract

Autism is highly heritable and diagnosed more frequently in males than females. To identify neurodevelopmental processes that might present sex-biased vulnerability, we generated transcriptomic and epigenomic profiles of cell types present in the prenatally developing human cerebral cortex of 27 males and 21 females. By intersecting sex-biased molecular signatures and genes with mutations in male and female autistic probands, we reveal two points of vulnerability contributing to the sex-biased penetrance in neurodevelopmental disorders (NDDs). First, we show that NDD risk genes are biased towards higher expression in females, identifying the NDD gene as a critical transcription factor for female-biased expression. Second, we identify a significant contribution of X chromosome genes to NDD pathobiology. We construct a gene regulatory map of X-linked risk genes to enable functional studies of genetic variants that likely disrupt gene expression in the developing brains of autistic males. Together, these results point towards an outsized contribution of the X-chromosome to both the origin of sex differences in the developing human cortex and NDD vulnerability. We propose a model where female-biased vulnerability is driven by coding variation within genes while male-biased vulnerability is driven by noncoding variation in regulatory elements that affect gene expression.

摘要

自闭症具有高度遗传性,男性的诊断率高于女性。为了确定可能存在性别偏见易感性的神经发育过程,我们生成了27名男性和21名女性产前发育中的人类大脑皮质中存在的细胞类型的转录组和表观基因组图谱。通过将性别偏见分子特征和基因与男性和女性自闭症先证者的突变进行交叉分析,我们揭示了导致神经发育障碍(NDDs)中性别偏见外显率的两个易感性点。首先,我们表明NDD风险基因倾向于在女性中高表达,将NDD基因确定为女性偏向表达的关键转录因子。其次,我们确定了X染色体基因对NDD病理生物学的重大贡献。我们构建了一个X连锁风险基因的基因调控图谱,以促进对可能破坏自闭症男性发育中大脑基因表达的遗传变异的功能研究。总之,这些结果表明X染色体对发育中的人类皮质性别差异的起源和NDD易感性都有巨大贡献。我们提出了一个模型,其中女性偏向易感性由基因内的编码变异驱动,而男性偏向易感性由影响基因表达的调控元件中的非编码变异驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b23/12424995/20974be8a790/nihpp-2025.09.04.674293v1-f0001.jpg

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