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Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain

Genomic regulatory elements active in the developing human brain are notably enriched in genetic risk for neuropsychiatric disorders, including autism spectrum disorder (ASD), schizophrenia, and bipolar disorder. However, prioritizing the specific risk genes and candidate molecular mechanisms underl...

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Autores principales: Wen, Cindy, Margolis, Michael, Dai, Rujia, Zhang, Pan, Przytycki, Pawel F., Vo, Daniel D., Bhattacharya, Arjun, Matoba, Nana, Jiao, Chuan, Kim, Minsoo, Tsai, Ellen, Hoh, Celine, Aygün, Nil, Walker, Rebecca L., Chatzinakos, Christos, Clarke, Declan, Pratt, Henry, Consortium, PsychENCODE, Peters, Mette A., Gerstein, Mark, Daskalakis, Nikolaos P., Weng, Zhiping, Jaffe, Andrew E., Kleinman, Joel E., Hyde, Thomas M., Weinberger, Daniel R., Bray, Nicholas J., Sestan, Nenad, Geschwind, Daniel H., Roeder, Kathryn, Gusev, Alexander, Pasaniuc, Bogdan, Stein, Jason L., Love, Michael I., Pollard, Katherine S., Liu, Chunyu, Gandal, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10029021/
https://www.ncbi.nlm.nih.gov/pubmed/36945630
http://dx.doi.org/10.1101/2023.03.03.23286706
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author Wen, Cindy
Margolis, Michael
Dai, Rujia
Zhang, Pan
Przytycki, Pawel F.
Vo, Daniel D.
Bhattacharya, Arjun
Matoba, Nana
Jiao, Chuan
Kim, Minsoo
Tsai, Ellen
Hoh, Celine
Aygün, Nil
Walker, Rebecca L.
Chatzinakos, Christos
Clarke, Declan
Pratt, Henry
Consortium, PsychENCODE
Peters, Mette A.
Gerstein, Mark
Daskalakis, Nikolaos P.
Weng, Zhiping
Jaffe, Andrew E.
Kleinman, Joel E.
Hyde, Thomas M.
Weinberger, Daniel R.
Bray, Nicholas J.
Sestan, Nenad
Geschwind, Daniel H.
Roeder, Kathryn
Gusev, Alexander
Pasaniuc, Bogdan
Stein, Jason L.
Love, Michael I.
Pollard, Katherine S.
Liu, Chunyu
Gandal, Michael J.
author_facet Wen, Cindy
Margolis, Michael
Dai, Rujia
Zhang, Pan
Przytycki, Pawel F.
Vo, Daniel D.
Bhattacharya, Arjun
Matoba, Nana
Jiao, Chuan
Kim, Minsoo
Tsai, Ellen
Hoh, Celine
Aygün, Nil
Walker, Rebecca L.
Chatzinakos, Christos
Clarke, Declan
Pratt, Henry
Consortium, PsychENCODE
Peters, Mette A.
Gerstein, Mark
Daskalakis, Nikolaos P.
Weng, Zhiping
Jaffe, Andrew E.
Kleinman, Joel E.
Hyde, Thomas M.
Weinberger, Daniel R.
Bray, Nicholas J.
Sestan, Nenad
Geschwind, Daniel H.
Roeder, Kathryn
Gusev, Alexander
Pasaniuc, Bogdan
Stein, Jason L.
Love, Michael I.
Pollard, Katherine S.
Liu, Chunyu
Gandal, Michael J.
author_sort Wen, Cindy
collection PubMed
description Genomic regulatory elements active in the developing human brain are notably enriched in genetic risk for neuropsychiatric disorders, including autism spectrum disorder (ASD), schizophrenia, and bipolar disorder. However, prioritizing the specific risk genes and candidate molecular mechanisms underlying these genetic enrichments has been hindered by the lack of a single unified large-scale gene regulatory atlas of human brain development. Here, we uniformly process and systematically characterize gene, isoform, and splicing quantitative trait loci (xQTLs) in 672 fetal brain samples from unique subjects across multiple ancestral populations. We identify 15,752 genes harboring a significant xQTL and map 3,739 eQTLs to a specific cellular context. We observe a striking drop in gene expression and splicing heritability as the human brain develops. Isoform-level regulation, particularly in the second trimester, mediates the greatest proportion of heritability across multiple psychiatric GWAS, compared with eQTLs. Via colocalization and TWAS, we prioritize biological mechanisms for ~60% of GWAS loci across five neuropsychiatric disorders, nearly two-fold that observed in the adult brain. Finally, we build a comprehensive set of developmentally regulated gene and isoform co-expression networks capturing unique genetic enrichments across disorders. Together, this work provides a comprehensive view of genetic regulation across human brain development as well as the stage-and cell type-informed mechanistic underpinnings of neuropsychiatric disorders.
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spelling pubmed-100290212023-03-22 Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain Wen, Cindy Margolis, Michael Dai, Rujia Zhang, Pan Przytycki, Pawel F. Vo, Daniel D. Bhattacharya, Arjun Matoba, Nana Jiao, Chuan Kim, Minsoo Tsai, Ellen Hoh, Celine Aygün, Nil Walker, Rebecca L. Chatzinakos, Christos Clarke, Declan Pratt, Henry Consortium, PsychENCODE Peters, Mette A. Gerstein, Mark Daskalakis, Nikolaos P. Weng, Zhiping Jaffe, Andrew E. Kleinman, Joel E. Hyde, Thomas M. Weinberger, Daniel R. Bray, Nicholas J. Sestan, Nenad Geschwind, Daniel H. Roeder, Kathryn Gusev, Alexander Pasaniuc, Bogdan Stein, Jason L. Love, Michael I. Pollard, Katherine S. Liu, Chunyu Gandal, Michael J. medRxiv Article Genomic regulatory elements active in the developing human brain are notably enriched in genetic risk for neuropsychiatric disorders, including autism spectrum disorder (ASD), schizophrenia, and bipolar disorder. However, prioritizing the specific risk genes and candidate molecular mechanisms underlying these genetic enrichments has been hindered by the lack of a single unified large-scale gene regulatory atlas of human brain development. Here, we uniformly process and systematically characterize gene, isoform, and splicing quantitative trait loci (xQTLs) in 672 fetal brain samples from unique subjects across multiple ancestral populations. We identify 15,752 genes harboring a significant xQTL and map 3,739 eQTLs to a specific cellular context. We observe a striking drop in gene expression and splicing heritability as the human brain develops. Isoform-level regulation, particularly in the second trimester, mediates the greatest proportion of heritability across multiple psychiatric GWAS, compared with eQTLs. Via colocalization and TWAS, we prioritize biological mechanisms for ~60% of GWAS loci across five neuropsychiatric disorders, nearly two-fold that observed in the adult brain. Finally, we build a comprehensive set of developmentally regulated gene and isoform co-expression networks capturing unique genetic enrichments across disorders. Together, this work provides a comprehensive view of genetic regulation across human brain development as well as the stage-and cell type-informed mechanistic underpinnings of neuropsychiatric disorders. Cold Spring Harbor Laboratory 2023-03-06 /pmc/articles/PMC10029021/ /pubmed/36945630 http://dx.doi.org/10.1101/2023.03.03.23286706 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Wen, Cindy
Margolis, Michael
Dai, Rujia
Zhang, Pan
Przytycki, Pawel F.
Vo, Daniel D.
Bhattacharya, Arjun
Matoba, Nana
Jiao, Chuan
Kim, Minsoo
Tsai, Ellen
Hoh, Celine
Aygün, Nil
Walker, Rebecca L.
Chatzinakos, Christos
Clarke, Declan
Pratt, Henry
Consortium, PsychENCODE
Peters, Mette A.
Gerstein, Mark
Daskalakis, Nikolaos P.
Weng, Zhiping
Jaffe, Andrew E.
Kleinman, Joel E.
Hyde, Thomas M.
Weinberger, Daniel R.
Bray, Nicholas J.
Sestan, Nenad
Geschwind, Daniel H.
Roeder, Kathryn
Gusev, Alexander
Pasaniuc, Bogdan
Stein, Jason L.
Love, Michael I.
Pollard, Katherine S.
Liu, Chunyu
Gandal, Michael J.
Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title_full Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title_fullStr Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title_full_unstemmed Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title_short Cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
title_sort cross-ancestry, cell-type-informed atlas of gene, isoform, and splicing regulation in the developing human brain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10029021/
https://www.ncbi.nlm.nih.gov/pubmed/36945630
http://dx.doi.org/10.1101/2023.03.03.23286706
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