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Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets

Genome-wide association studies have mainly relied on common HapMap sequence variations. Recently, sequencing approaches have allowed analysis of low frequency and rare variants in conjunction with common variants, thereby improving the search for functional variants and thus the understanding of th...

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Autores principales: Grarup, Niels, Sulem, Patrick, Sandholt, Camilla H., Thorleifsson, Gudmar, Ahluwalia, Tarunveer S., Steinthorsdottir, Valgerdur, Bjarnason, Helgi, Gudbjartsson, Daniel F., Magnusson, Olafur T., Sparsø, Thomas, Albrechtsen, Anders, Kong, Augustine, Masson, Gisli, Tian, Geng, Cao, Hongzhi, Nie, Chao, Kristiansen, Karsten, Husemoen, Lise Lotte, Thuesen, Betina, Li, Yingrui, Nielsen, Rasmus, Linneberg, Allan, Olafsson, Isleifur, Eyjolfsson, Gudmundur I., Jørgensen, Torben, Wang, Jun, Hansen, Torben, Thorsteinsdottir, Unnur, Stefánsson, Kari, Pedersen, Oluf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674994/
https://www.ncbi.nlm.nih.gov/pubmed/23754956
http://dx.doi.org/10.1371/journal.pgen.1003530
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author Grarup, Niels
Sulem, Patrick
Sandholt, Camilla H.
Thorleifsson, Gudmar
Ahluwalia, Tarunveer S.
Steinthorsdottir, Valgerdur
Bjarnason, Helgi
Gudbjartsson, Daniel F.
Magnusson, Olafur T.
Sparsø, Thomas
Albrechtsen, Anders
Kong, Augustine
Masson, Gisli
Tian, Geng
Cao, Hongzhi
Nie, Chao
Kristiansen, Karsten
Husemoen, Lise Lotte
Thuesen, Betina
Li, Yingrui
Nielsen, Rasmus
Linneberg, Allan
Olafsson, Isleifur
Eyjolfsson, Gudmundur I.
Jørgensen, Torben
Wang, Jun
Hansen, Torben
Thorsteinsdottir, Unnur
Stefánsson, Kari
Pedersen, Oluf
author_facet Grarup, Niels
Sulem, Patrick
Sandholt, Camilla H.
Thorleifsson, Gudmar
Ahluwalia, Tarunveer S.
Steinthorsdottir, Valgerdur
Bjarnason, Helgi
Gudbjartsson, Daniel F.
Magnusson, Olafur T.
Sparsø, Thomas
Albrechtsen, Anders
Kong, Augustine
Masson, Gisli
Tian, Geng
Cao, Hongzhi
Nie, Chao
Kristiansen, Karsten
Husemoen, Lise Lotte
Thuesen, Betina
Li, Yingrui
Nielsen, Rasmus
Linneberg, Allan
Olafsson, Isleifur
Eyjolfsson, Gudmundur I.
Jørgensen, Torben
Wang, Jun
Hansen, Torben
Thorsteinsdottir, Unnur
Stefánsson, Kari
Pedersen, Oluf
author_sort Grarup, Niels
collection PubMed
description Genome-wide association studies have mainly relied on common HapMap sequence variations. Recently, sequencing approaches have allowed analysis of low frequency and rare variants in conjunction with common variants, thereby improving the search for functional variants and thus the understanding of the underlying biology of human traits and diseases. Here, we used a large Icelandic whole genome sequence dataset combined with Danish exome sequence data to gain insight into the genetic architecture of serum levels of vitamin B(12) (B(12)) and folate. Up to 22.9 million sequence variants were analyzed in combined samples of 45,576 and 37,341 individuals with serum B(12) and folate measurements, respectively. We found six novel loci associating with serum B(12) (CD320, TCN2, ABCD4, MMAA, MMACHC) or folate levels (FOLR3) and confirmed seven loci for these traits (TCN1, FUT6, FUT2, CUBN, CLYBL, MUT, MTHFR). Conditional analyses established that four loci contain additional independent signals. Interestingly, 13 of the 18 identified variants were coding and 11 of the 13 target genes have known functions related to B(12) and folate pathways. Contrary to epidemiological studies we did not find consistent association of the variants with cardiovascular diseases, cancers or Alzheimer's disease although some variants demonstrated pleiotropic effects. Although to some degree impeded by low statistical power for some of these conditions, these data suggest that sequence variants that contribute to the population diversity in serum B(12) or folate levels do not modify the risk of developing these conditions. Yet, the study demonstrates the value of combining whole genome and exome sequencing approaches to ascertain the genetic and molecular architectures underlying quantitative trait associations.
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spelling pubmed-36749942013-06-10 Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets Grarup, Niels Sulem, Patrick Sandholt, Camilla H. Thorleifsson, Gudmar Ahluwalia, Tarunveer S. Steinthorsdottir, Valgerdur Bjarnason, Helgi Gudbjartsson, Daniel F. Magnusson, Olafur T. Sparsø, Thomas Albrechtsen, Anders Kong, Augustine Masson, Gisli Tian, Geng Cao, Hongzhi Nie, Chao Kristiansen, Karsten Husemoen, Lise Lotte Thuesen, Betina Li, Yingrui Nielsen, Rasmus Linneberg, Allan Olafsson, Isleifur Eyjolfsson, Gudmundur I. Jørgensen, Torben Wang, Jun Hansen, Torben Thorsteinsdottir, Unnur Stefánsson, Kari Pedersen, Oluf PLoS Genet Research Article Genome-wide association studies have mainly relied on common HapMap sequence variations. Recently, sequencing approaches have allowed analysis of low frequency and rare variants in conjunction with common variants, thereby improving the search for functional variants and thus the understanding of the underlying biology of human traits and diseases. Here, we used a large Icelandic whole genome sequence dataset combined with Danish exome sequence data to gain insight into the genetic architecture of serum levels of vitamin B(12) (B(12)) and folate. Up to 22.9 million sequence variants were analyzed in combined samples of 45,576 and 37,341 individuals with serum B(12) and folate measurements, respectively. We found six novel loci associating with serum B(12) (CD320, TCN2, ABCD4, MMAA, MMACHC) or folate levels (FOLR3) and confirmed seven loci for these traits (TCN1, FUT6, FUT2, CUBN, CLYBL, MUT, MTHFR). Conditional analyses established that four loci contain additional independent signals. Interestingly, 13 of the 18 identified variants were coding and 11 of the 13 target genes have known functions related to B(12) and folate pathways. Contrary to epidemiological studies we did not find consistent association of the variants with cardiovascular diseases, cancers or Alzheimer's disease although some variants demonstrated pleiotropic effects. Although to some degree impeded by low statistical power for some of these conditions, these data suggest that sequence variants that contribute to the population diversity in serum B(12) or folate levels do not modify the risk of developing these conditions. Yet, the study demonstrates the value of combining whole genome and exome sequencing approaches to ascertain the genetic and molecular architectures underlying quantitative trait associations. Public Library of Science 2013-06-06 /pmc/articles/PMC3674994/ /pubmed/23754956 http://dx.doi.org/10.1371/journal.pgen.1003530 Text en © 2013 Grarup et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Grarup, Niels
Sulem, Patrick
Sandholt, Camilla H.
Thorleifsson, Gudmar
Ahluwalia, Tarunveer S.
Steinthorsdottir, Valgerdur
Bjarnason, Helgi
Gudbjartsson, Daniel F.
Magnusson, Olafur T.
Sparsø, Thomas
Albrechtsen, Anders
Kong, Augustine
Masson, Gisli
Tian, Geng
Cao, Hongzhi
Nie, Chao
Kristiansen, Karsten
Husemoen, Lise Lotte
Thuesen, Betina
Li, Yingrui
Nielsen, Rasmus
Linneberg, Allan
Olafsson, Isleifur
Eyjolfsson, Gudmundur I.
Jørgensen, Torben
Wang, Jun
Hansen, Torben
Thorsteinsdottir, Unnur
Stefánsson, Kari
Pedersen, Oluf
Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title_full Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title_fullStr Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title_full_unstemmed Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title_short Genetic Architecture of Vitamin B(12) and Folate Levels Uncovered Applying Deeply Sequenced Large Datasets
title_sort genetic architecture of vitamin b(12) and folate levels uncovered applying deeply sequenced large datasets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674994/
https://www.ncbi.nlm.nih.gov/pubmed/23754956
http://dx.doi.org/10.1371/journal.pgen.1003530
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