X-linked genes and mental functioning
Гены, сцепленные с X-хромосомой, и психические функции
2005-04-04
SCID: 54.1/r2h4m8et
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X-inactivationX-linked genesintelligencemental functioningsocial cognition
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Abstract (AI)
The X-chromosome has played a crucial role in the development of sexually selected characteristics for over 300 million years. During that time it has accumulated a disproportionate number of genes concerned with mental functions. Evidence is emerging, from studies of both humans and mice, for a general influence upon intelligence (as indicated by the large number of X-linked mental retardation syndromes). In addition, there is evidence for relatively specific effects of X-linked genes on social-cognition and emotional regulation. Sexually dimorphic processes could be influenced by several mechanisms. First, a small number of X-linked genes are apparently expressed differently in male and female brains in mouse models. Secondly, many human X-linked genes outside the X-Y pairing pseudoautosomal regions escape X-inactivation. Dosage differences in the expression of such genes (which might comprise at least 20% of the total) are likely to play an important role in male-female neural differentiation. To date, little is known about the process but clues can be gleaned from the study of X-monosomic females who are haploinsufficient for expression of all non-inactivated genes relative to 46,XX females. Finally, from studies of both X-monosomic humans (45,X) and mice (39,X), we are learning more about the influences of X-linked imprinted genes upon brain structure and function. Surprising specificity of effects has been described in both species, and identification of candidate genes cannot now be far off.
Key Findings
1
Human and mouse studies indicate that X-linked genes broadly influence intelligence, evidenced by the many X-linked intellectual disability syndromes.
2
Sex differences in neural development may arise from sex-biased brain expression of X-linked genes and dosage differences in genes that escape X-inactivation.
3
Studies of 45,X humans and 39,X mice reveal surprisingly specific effects of X-linked dosage and imprinted genes on brain structure and function.
4
The X chromosome contains a disproportionate number of genes involved in mental functions, reflecting its long evolutionary association with sexually selected traits.
5
X-linked genes appear to have relatively specific effects on social cognition and emotional regulation, beyond general intellectual functioning.
Research Object
X-linked genes and their effects on human and mouse brain function
Research Subject
The influence of X-linked gene dosage, sex-specific expression, X-inactivation escape, and genomic imprinting on intelligence, social cognition, emotional regulation, and sex differences in brain structure and function
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2005-04-04
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