Sex differences in early human fetal brain development
Buonocore, F.; Suntharalingham, J. P.; Ogunbiyi, O.; Jones, A.; Moreno, N.; Niola, P.; Brooks, T.; Solanky, N.; Dattani, M. T.; del Valle, I.; Achermann, J. C.
Show abstract
The influence of sex chromosomes and sex hormones on early human brain development is poorly understood. We therefore undertook transcriptomic analysis of 46,XY and 46,XX human brain cortex samples (n=64) at four different time points between 7.5 and 17 weeks post conception (wpc), in two independent studies. This developmental period encompasses the onset of testicular testosterone secretion in the 46,XY fetus (8wpc). Differences in sex chromosome gene expression included X-inactivation genes (XIST, TSIX) in 46,XX samples; core Y chromosome genes (n=18) in 46,XY samples; and two Y chromosome brain specific genes, PCDH11Y and RP11-424G14.1. PCDH11Y (protocadherin11 Y-linked) regulates excitatory neurons; this gene is unique to humans and is implicated in language development. RP11-424G14.1 is a novel long non-coding RNA. Fewer differences in sex hormone pathway-related genes were seen. The androgen receptor (AR, NR4A2) showed cortex expression in both sexes, which decreased with age. Global cortical sex hormone effects were not seen, but more localized AR mechanisms may be important with time (e.g., hypothalamus). Taken together, our data suggest that limited but potentially important sex differences occur during early human fetal brain development.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The transcriptomic landscape of monosomy X (45,X) during early human fetal and placental development 97%
- Sex-specific single cell-level transcriptomic signatures of Rett syndrome disease progression 93%
- p38-MAPK mediated rRNA processing and translation regulation enables PrE differentiation during mouse blastocyst maturation. 93%
Similar papers in this journal
- Sex dependent gene activity in the human body 95%
- Altered gene expression profiles impair the nervous system development in individuals with 15q13.3 microdeletion 94%
- Characterization of the nuclear and cytosolic transcriptomes in human brain tissue reveals new insights into the subcellular distribution of RNA transcripts 93%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.