X-chromosome regulation and sex differences in brain anatomy
Регуляция X-хромосомы и половые различия в анатомии мозга
2020-11-07
SCID: 54.1/xvs87qns
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X-chromosome regulationmagnetic resonance imagingsex differences in brain anatomysex-biased gene expressionsex-chromosome genes
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Abstract (AI)
Humans show reproducible sex-differences in cognition and psychopathology that may be contributed to by influences of gonadal sex-steroids and/or sex-chromosomes on regional brain development. Gonadal sex-steroids are well known to play a major role in sexual differentiation of the vertebrate brain, but far less is known regarding the role of sex-chromosomes. Our review focuses on this latter issue by bridging together two literatures that have to date been largely disconnected. We first consider "bottom-up" genetic and molecular studies focused on sex-chromosome gene content and regulation. This literature nominates specific sex-chromosome genes that could drive developmental sex-differences by virtue of their sex-biased expression and their functions within the brain. We then consider the complementary "top down" view, from magnetic resonance imaging studies that map sex- and sex chromosome effects on regional brain anatomy, and link these maps to regional gene-expression within the brain. By connecting these top-down and bottom-up approaches, we emphasize the potential role of X-linked genes in driving sex-biased brain development and outline key goals for future work in this field.
Key Findings
1
Genetic and molecular evidence identifies specific sex-chromosome genes whose sex-biased expression and brain functions could drive developmental sex differences.
2
Integrating brain-imaging maps with regional gene-expression data highlights X-linked genes as potential drivers of sex-biased brain development.
3
MRI studies provide a complementary top-down perspective by mapping sex- and sex-chromosome-associated differences in regional brain anatomy.
4
The field requires future work connecting molecular mechanisms with anatomical sex differences to clarify how X-chromosome regulation shapes the brain.
5
The review argues that sex chromosomes, alongside gonadal sex steroids, may contribute to reproducible sex differences in cognition, psychopathology, and regional brain development.
Research Object
sex-chromosome regulation and regional brain development/anatomy in humans
Research Subject
the role of X-linked genes and sex-chromosome effects in producing sex-biased regional brain development and anatomy
Publication Details
Publication Date
2020-11-07
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