ArticleEpigenetics & chromatin2021
Contribution of genetic and epigenetic changes to escape from X-chromosome inactivation.
Article in Epigenetics & chromatin, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 26 papers.
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Who cites it
26 citing papers in PubMed, 35 citations in OpenAlex.
- The Non-Coding rs5945619 Variant at Xp11.22 and Its Putative Regulatory Effects on Nearby Genes in Ecuadorian Mestizo Women with Breast Cancer: A Case Series and In Silico Cis-eQTL Analysis.International journal of molecular sciences · 2026Article
- Using combined RNA/DNA short read sequencing to investigate allele-specific expression from the inactive X chromosome in human cells.bioRxiv : the preprint server for biology · 2026Article
- Xist RNA dependent and independent mechanisms regulate dynamic X chromosome inactivation in B lymphocytes.Cell reports · 2026Article
- Selective chr21 homolog silencing reveals polymorphisms influence the epigenetic silencing and functional dosage of RWDD2B.American journal of human genetics · 2026Article
- Sex as a Biological Variable in Tuberculosis Pathogenesis.Immunological reviews · 2026Review
- Impact of prenatal environmental exposure on offspring neurodevelopment and susceptibility to neurodegenerative diseases: mechanisms and perspectives.Frontiers in public health · 2026Review
- The impact of X chromosome inactivation on human health.Frontiers in genetics · 2026Review
- Genomic Instability and Clonal Hematopoiesis in the Deep-Space Environment: The Role of Sex-Chromosome Asymmetry and High-LET Radiation.Current stem cell reports · 2026Article
- Selective chr21 homolog silencing reveals polymorphisms influence the epigenetic silencing and functional dosage of RWDD2B.bioRxiv : the preprint server for biology · 2025Article
- Molecular dynamics simulations reveal subtle consequences of H3K9 and H3K27 tri-methylation on chromatin constituents.Biophysical journal · 2025Article
- Xq24/HemaSphere · 2025Article
- X chromosome inactivation in mammals: general principles and species-specific considerations.EMBO reports · 2025Review
- Escape from X-chromosome inactivation at KDM5C is driven by promoter-proximal DNA elements and enhanced by domain context.Human molecular genetics · 2025Article
- CTCF-mediated insulation and chromatin environment modulate Car5b escape from X inactivation.BMC biology · 2025Article
- Defective X-chromosome inactivation and cancer risk in women.Communications biology · 2025Article
- Parental benzo[a]pyrene exposure impacts histone modifications in osteoblast subpopulations.Environmental epigenetics · 2025Article
- Age-Dependent DNA Methylation Variability on the X-Chromosome in Male and Female Twins.Epigenomes · 2024Article
- Multifaceted role of CTCF in X-chromosome inactivation.Chromosoma · 2024Review
- Quantification of escape from X chromosome inactivation with single-cell omics data reveals heterogeneity across cell types and tissues.Cell genomics · 2024Article
- Epigenetic mechanisms regulate sex differences in cardiac reparative functions of bone marrow progenitor cells.NPJ Regenerative medicine · 2024Article
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2 authors at 1 institution in 1 country.
Funding
Abstract
backgroundX-chromosome inactivation (XCI) is the epigenetic inactivation of one of two X chromosomes in XX eutherian mammals. The inactive X chromosome is the result of multiple silencing pathways that act in concert to deposit chromatin changes, including DNA methylation and histone modifications. Yet over 15% of genes escape or variably escape from inactivation and continue to be expressed from the otherwise inactive X chromosome. To the extent that they have been studied, epigenetic marks correlate with this expression.
resultsUsing publicly available data, we compared XCI status calls with DNA methylation, H3K4me1, H3K4me3, H3K9me3, H3K27ac, H3K27me3 and H3K36me3. At genes subject to XCI we found heterochromatic marks enriched, and euchromatic marks depleted on the inactive X when compared to the active X. Genes escaping XCI were more similar between the active and inactive X. Using sample-specific XCI status calls, we found some marks differed significantly with variable XCI status, but which marks were significant was not consistent between genes. A model trained to predict XCI status from these epigenetic marks obtained over 75% accuracy for genes escaping and over 90% for genes subject to XCI. This model made novel XCI status calls for genes without allelic differences or CpG islands required for other methods. Examining these calls across a domain of variably escaping genes, we saw XCI status vary across individual genes rather than at the domain level. Lastly, we compared XCI status calls to genetic polymorphisms, finding multiple loci associated with XCI status changes at variably escaping genes, but none individually sufficient to induce an XCI status change.
conclusionThe control of expression from the inactive X chromosome is multifaceted, but ultimately regulated at the individual gene level with detectable but limited impact of distant polymorphisms. On the inactive X, at silenced genes euchromatic marks are depleted while heterochromatic marks are enriched. Genes escaping inactivation show a less significant enrichment of heterochromatic marks and depletion of H3K27ac. Combining all examined marks improved XCI status prediction, particularly for genes without CpG islands or polymorphisms, as no single feature is a consistent feature of silenced or expressed genes.
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