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Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose

Opioid use disorder is a highly heterogeneous disease driven by a variety of genetic and environmental risk factors which have yet to be fully elucidated. Opioid overdose, the most severe outcome of opioid use disorder, remains the leading cause of accidental death in the United States. We interroga...

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Autores principales: Corradin, Olivia, Sallari, Richard, Hoang, An T., Kassim, Bibi S, Hutta, Gabriella Ben, Cuoto, Lizette, Quach, Bryan C., Lovrenert, Katreya, Hays, Cameron, Gryder, Berkley E., Iskhakova, Marina, Cates, Hannah, Song, Yanwei, Bartels, Cynthia F., Hancock, Dana B., Mash, Deborah C., Johnson, Eric O., Akbarian, Schahram, Scacheri, Peter C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9133127/
https://www.ncbi.nlm.nih.gov/pubmed/35301427
http://dx.doi.org/10.1038/s41380-022-01477-y
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author Corradin, Olivia
Sallari, Richard
Hoang, An T.
Kassim, Bibi S
Hutta, Gabriella Ben
Cuoto, Lizette
Quach, Bryan C.
Lovrenert, Katreya
Hays, Cameron
Gryder, Berkley E.
Iskhakova, Marina
Cates, Hannah
Song, Yanwei
Bartels, Cynthia F.
Hancock, Dana B.
Mash, Deborah C.
Johnson, Eric O.
Akbarian, Schahram
Scacheri, Peter C.
author_facet Corradin, Olivia
Sallari, Richard
Hoang, An T.
Kassim, Bibi S
Hutta, Gabriella Ben
Cuoto, Lizette
Quach, Bryan C.
Lovrenert, Katreya
Hays, Cameron
Gryder, Berkley E.
Iskhakova, Marina
Cates, Hannah
Song, Yanwei
Bartels, Cynthia F.
Hancock, Dana B.
Mash, Deborah C.
Johnson, Eric O.
Akbarian, Schahram
Scacheri, Peter C.
author_sort Corradin, Olivia
collection PubMed
description Opioid use disorder is a highly heterogeneous disease driven by a variety of genetic and environmental risk factors which have yet to be fully elucidated. Opioid overdose, the most severe outcome of opioid use disorder, remains the leading cause of accidental death in the United States. We interrogated the effects of opioid overdose on the brain using ChIP-seq to quantify patterns of H3K27 acetylation in dorsolateral prefrontal cortical neurons isolated from 51 opioid-overdose cases and 51 accidental death controls. Among opioid cases, we observed global hypoacetylation and identified 388 putative enhancers consistently depleted for H3K27ac. Machine learning on H3K27ac patterns predicted case-control status with high accuracy. We focused on case-specific regulatory alterations, revealing 81,399 hypoacetylation events, uncovering vast inter-patient heterogeneity. We developed a strategy to decode this heterogeneity based on convergence analysis, which leveraged promoter-capture Hi-C to identify five genes over-burdened by alterations in their regulatory network or “plexus”: ASTN2, KCNMA1, DUSP4, GABBR2, ENOX1. These convergent loci are enriched for opioid use disorder risk genes and heritability for generalized anxiety, number of sexual partners, and years of education. Overall, our multi-pronged approach uncovers neurobiological aspects of opioid use disorder and captures genetic and environmental factors perpetuating the opioid epidemic.
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spelling pubmed-91331272022-09-17 Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose Corradin, Olivia Sallari, Richard Hoang, An T. Kassim, Bibi S Hutta, Gabriella Ben Cuoto, Lizette Quach, Bryan C. Lovrenert, Katreya Hays, Cameron Gryder, Berkley E. Iskhakova, Marina Cates, Hannah Song, Yanwei Bartels, Cynthia F. Hancock, Dana B. Mash, Deborah C. Johnson, Eric O. Akbarian, Schahram Scacheri, Peter C. Mol Psychiatry Article Opioid use disorder is a highly heterogeneous disease driven by a variety of genetic and environmental risk factors which have yet to be fully elucidated. Opioid overdose, the most severe outcome of opioid use disorder, remains the leading cause of accidental death in the United States. We interrogated the effects of opioid overdose on the brain using ChIP-seq to quantify patterns of H3K27 acetylation in dorsolateral prefrontal cortical neurons isolated from 51 opioid-overdose cases and 51 accidental death controls. Among opioid cases, we observed global hypoacetylation and identified 388 putative enhancers consistently depleted for H3K27ac. Machine learning on H3K27ac patterns predicted case-control status with high accuracy. We focused on case-specific regulatory alterations, revealing 81,399 hypoacetylation events, uncovering vast inter-patient heterogeneity. We developed a strategy to decode this heterogeneity based on convergence analysis, which leveraged promoter-capture Hi-C to identify five genes over-burdened by alterations in their regulatory network or “plexus”: ASTN2, KCNMA1, DUSP4, GABBR2, ENOX1. These convergent loci are enriched for opioid use disorder risk genes and heritability for generalized anxiety, number of sexual partners, and years of education. Overall, our multi-pronged approach uncovers neurobiological aspects of opioid use disorder and captures genetic and environmental factors perpetuating the opioid epidemic. 2022-04 2022-03-17 /pmc/articles/PMC9133127/ /pubmed/35301427 http://dx.doi.org/10.1038/s41380-022-01477-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Corradin, Olivia
Sallari, Richard
Hoang, An T.
Kassim, Bibi S
Hutta, Gabriella Ben
Cuoto, Lizette
Quach, Bryan C.
Lovrenert, Katreya
Hays, Cameron
Gryder, Berkley E.
Iskhakova, Marina
Cates, Hannah
Song, Yanwei
Bartels, Cynthia F.
Hancock, Dana B.
Mash, Deborah C.
Johnson, Eric O.
Akbarian, Schahram
Scacheri, Peter C.
Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title_full Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title_fullStr Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title_full_unstemmed Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title_short Convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
title_sort convergence of case-specific epigenetic alterations identify a confluence of genetic vulnerabilities tied to opioid overdose
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9133127/
https://www.ncbi.nlm.nih.gov/pubmed/35301427
http://dx.doi.org/10.1038/s41380-022-01477-y
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