Cargando…

Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites

Metabolite levels measured in the human population are endophenotypes for biological processes. We combined sequencing data for 3,924 (whole-exome sequencing, WES, discovery) and 2,805 (whole-genome sequencing, WGS, replication) donors from a prospective cohort of blood donors in England. We used mu...

Descripción completa

Detalles Bibliográficos
Autores principales: Bomba, Lorenzo, Walter, Klaudia, Guo, Qi, Surendran, Praveen, Kundu, Kousik, Nongmaithem, Suraj, Karim, Mohd Anisul, Stewart, Isobel D., Langenberg, Claudia, Danesh, John, Di Angelantonio, Emanuele, Roberts, David J., Ouwehand, Willem H., Dunham, Ian, Butterworth, Adam S., Soranzo, Nicole
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9247822/
https://www.ncbi.nlm.nih.gov/pubmed/35568032
http://dx.doi.org/10.1016/j.ajhg.2022.04.009
_version_ 1784739246517518336
author Bomba, Lorenzo
Walter, Klaudia
Guo, Qi
Surendran, Praveen
Kundu, Kousik
Nongmaithem, Suraj
Karim, Mohd Anisul
Stewart, Isobel D.
Langenberg, Claudia
Danesh, John
Di Angelantonio, Emanuele
Roberts, David J.
Ouwehand, Willem H.
Dunham, Ian
Butterworth, Adam S.
Soranzo, Nicole
author_facet Bomba, Lorenzo
Walter, Klaudia
Guo, Qi
Surendran, Praveen
Kundu, Kousik
Nongmaithem, Suraj
Karim, Mohd Anisul
Stewart, Isobel D.
Langenberg, Claudia
Danesh, John
Di Angelantonio, Emanuele
Roberts, David J.
Ouwehand, Willem H.
Dunham, Ian
Butterworth, Adam S.
Soranzo, Nicole
author_sort Bomba, Lorenzo
collection PubMed
description Metabolite levels measured in the human population are endophenotypes for biological processes. We combined sequencing data for 3,924 (whole-exome sequencing, WES, discovery) and 2,805 (whole-genome sequencing, WGS, replication) donors from a prospective cohort of blood donors in England. We used multiple approaches to select and aggregate rare genetic variants (minor allele frequency [MAF] < 0.1%) in protein-coding regions and tested their associations with 995 metabolites measured in plasma by using ultra-high-performance liquid chromatography–tandem mass spectrometry. We identified 40 novel associations implicating rare coding variants (27 genes and 38 metabolites), of which 28 (15 genes and 28 metabolites) were replicated. We developed algorithms to prioritize putative driver variants at each locus and used mediation and Mendelian randomization analyses to test directionality at associations of metabolite and protein levels at the ACY1 locus. Overall, 66% of reported associations implicate gene targets of approved drugs or bioactive drug-like compounds, contributing to drug targets' validating efforts.
format Online
Article
Text
id pubmed-9247822
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-92478222022-07-02 Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites Bomba, Lorenzo Walter, Klaudia Guo, Qi Surendran, Praveen Kundu, Kousik Nongmaithem, Suraj Karim, Mohd Anisul Stewart, Isobel D. Langenberg, Claudia Danesh, John Di Angelantonio, Emanuele Roberts, David J. Ouwehand, Willem H. Dunham, Ian Butterworth, Adam S. Soranzo, Nicole Am J Hum Genet Article Metabolite levels measured in the human population are endophenotypes for biological processes. We combined sequencing data for 3,924 (whole-exome sequencing, WES, discovery) and 2,805 (whole-genome sequencing, WGS, replication) donors from a prospective cohort of blood donors in England. We used multiple approaches to select and aggregate rare genetic variants (minor allele frequency [MAF] < 0.1%) in protein-coding regions and tested their associations with 995 metabolites measured in plasma by using ultra-high-performance liquid chromatography–tandem mass spectrometry. We identified 40 novel associations implicating rare coding variants (27 genes and 38 metabolites), of which 28 (15 genes and 28 metabolites) were replicated. We developed algorithms to prioritize putative driver variants at each locus and used mediation and Mendelian randomization analyses to test directionality at associations of metabolite and protein levels at the ACY1 locus. Overall, 66% of reported associations implicate gene targets of approved drugs or bioactive drug-like compounds, contributing to drug targets' validating efforts. Elsevier 2022-06-02 2022-05-13 /pmc/articles/PMC9247822/ /pubmed/35568032 http://dx.doi.org/10.1016/j.ajhg.2022.04.009 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bomba, Lorenzo
Walter, Klaudia
Guo, Qi
Surendran, Praveen
Kundu, Kousik
Nongmaithem, Suraj
Karim, Mohd Anisul
Stewart, Isobel D.
Langenberg, Claudia
Danesh, John
Di Angelantonio, Emanuele
Roberts, David J.
Ouwehand, Willem H.
Dunham, Ian
Butterworth, Adam S.
Soranzo, Nicole
Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title_full Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title_fullStr Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title_full_unstemmed Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title_short Whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
title_sort whole-exome sequencing identifies rare genetic variants associated with human plasma metabolites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9247822/
https://www.ncbi.nlm.nih.gov/pubmed/35568032
http://dx.doi.org/10.1016/j.ajhg.2022.04.009
work_keys_str_mv AT bombalorenzo wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT walterklaudia wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT guoqi wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT surendranpraveen wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT kundukousik wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT nongmaithemsuraj wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT karimmohdanisul wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT stewartisobeld wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT langenbergclaudia wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT daneshjohn wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT diangelantonioemanuele wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT robertsdavidj wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT ouwehandwillemh wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT dunhamian wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT butterworthadams wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites
AT soranzonicole wholeexomesequencingidentifiesraregeneticvariantsassociatedwithhumanplasmametabolites