The omics era: a nexus of untapped potential for Mendelian chromatinopathies.

Hum Genet

Department of Human Genetics, David Geffen School of Medicine, UCLA, Los Angeles, CA, USA.

Published: April 2024

AI Article Synopsis

  • The OMICs cascade outlines how information flows in biological systems, with the epigenome at the top regulating gene expression and cellular functions.
  • Mutations in genes regulating the epigenome (epigenes) can cause developmental disorders called "chromatinopathies," which impact multiple systems and lead to conditions like intellectual disabilities.
  • The study compiled the largest collection of chromatinopathies (179 disorders linked to 148 epigenes) and emphasizes the use of advanced OMICs technologies to explore these disorders and inform future treatments.

Article Abstract

The OMICs cascade describes the hierarchical flow of information through biological systems. The epigenome sits at the apex of the cascade, thereby regulating the RNA and protein expression of the human genome and governs cellular identity and function. Genes that regulate the epigenome, termed epigenes, orchestrate complex biological signaling programs that drive human development. The broad expression patterns of epigenes during human development mean that pathogenic germline mutations in epigenes can lead to clinically significant multi-system malformations, developmental delay, intellectual disabilities, and stem cell dysfunction. In this review, we refer to germline developmental disorders caused by epigene mutation as "chromatinopathies". We curated the largest number of human chromatinopathies to date and our expanded approach more than doubled the number of established chromatinopathies to 179 disorders caused by 148 epigenes. Our study revealed that 20.6% (148/720) of epigenes cause at least one chromatinopathy. In this review, we highlight key examples in which OMICs approaches have been applied to chromatinopathy patient biospecimens to identify underlying disease pathogenesis. The rapidly evolving OMICs technologies that couple molecular biology with high-throughput sequencing or proteomics allow us to dissect out the causal mechanisms driving temporal-, cellular-, and tissue-specific expression. Using the full repertoire of data generated by the OMICs cascade to study chromatinopathies will provide invaluable insight into the developmental impact of these epigenes and point toward future precision targets for these rare disorders.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11078811PMC
http://dx.doi.org/10.1007/s00439-023-02560-2DOI Listing

Publication Analysis

Top Keywords

omics cascade
8
human development
8
disorders caused
8
epigenes
6
omics
5
omics era
4
era nexus
4
nexus untapped
4
untapped potential
4
potential mendelian
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!