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Associations of genetically determined iron status across the phenome: A mendelian randomization study

BACKGROUND: Iron is integral to many physiological processes, and variations in its levels, even within the normal range, can have implications for health. The objective of this study was to explore the broad clinical effects of varying iron status. METHODS AND FINDINGS: Genome-wide association stud...

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Autores principales: Gill, Dipender, Benyamin, Beben, Moore, Luke S. P., Monori, Grace, Zhou, Ang, Koskeridis, Fotios, Evangelou, Evangelos, Laffan, Mike, Walker, Ann P., Tsilidis, Konstantinos K., Dehghan, Abbas, Elliott, Paul, Hyppönen, Elina, Tzoulaki, Ioanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6586257/
https://www.ncbi.nlm.nih.gov/pubmed/31220083
http://dx.doi.org/10.1371/journal.pmed.1002833
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author Gill, Dipender
Benyamin, Beben
Moore, Luke S. P.
Monori, Grace
Zhou, Ang
Koskeridis, Fotios
Evangelou, Evangelos
Laffan, Mike
Walker, Ann P.
Tsilidis, Konstantinos K.
Dehghan, Abbas
Elliott, Paul
Hyppönen, Elina
Tzoulaki, Ioanna
author_facet Gill, Dipender
Benyamin, Beben
Moore, Luke S. P.
Monori, Grace
Zhou, Ang
Koskeridis, Fotios
Evangelou, Evangelos
Laffan, Mike
Walker, Ann P.
Tsilidis, Konstantinos K.
Dehghan, Abbas
Elliott, Paul
Hyppönen, Elina
Tzoulaki, Ioanna
author_sort Gill, Dipender
collection PubMed
description BACKGROUND: Iron is integral to many physiological processes, and variations in its levels, even within the normal range, can have implications for health. The objective of this study was to explore the broad clinical effects of varying iron status. METHODS AND FINDINGS: Genome-wide association study (GWAS) summary data obtained from 48,972 European individuals (55% female) across 19 cohorts in the Genetics of Iron Status Consortium were used to identify 3 genetic variants (rs1800562 and rs1799945 in the hemochromatosis gene [HFE] and rs855791 in the transmembrane protease serine 6 gene [TMPRSS6]) that associate with increased serum iron, ferritin, and transferrin saturation and decreased transferrin levels, thus serving as instruments for systemic iron status. Phenome-wide association study (PheWAS) of these instruments was performed on 424,439 European individuals (54% female) in the UK Biobank who were aged 40–69 years when recruited from 2006 to 2010, with their genetic data linked to Hospital Episode Statistics (HES) from April, 1995 to March, 2016. Two-sample summary data mendelian randomization (MR) analysis was performed to investigate the effect of varying iron status on outcomes across the human phenome. MR–PheWAS analysis for the 3 iron status genetic instruments was performed separately and then pooled by meta-analysis. Correction was made for testing of multiple correlated phenotypes using a 5% false discovery rate (FDR) threshold. Heterogeneity between MR estimates for different instruments was used to indicate possible bias due to effects of the genetic variants through pathways unrelated to iron status. There were 904 distinct phenotypes included in the MR–PheWAS analyses. After correcting for multiple testing, the 3 genetic instruments for systemic iron status demonstrated consistent evidence of a causal effect of higher iron status on decreasing risk of traits related to anemia (iron deficiency anemia: odds ratio [OR] scaled to a standard deviation [SD] increase in genetically determined serum iron levels 0.72, 95% confidence interval [CI] 0.64–0.81, P = 4 × 10(−8)) and hypercholesterolemia (hypercholesterolemia: OR 0.88, 95% CI 0.83–0.93, P = 2 × 10(−5)) and increasing risk of traits related to infection of the skin and related structures (cellulitis and abscess of the leg: OR 1.25, 95% CI 1.10–1.42, P = 6 × 10(−4)). The main limitations of this study relate to possible bias from pleiotropic effects of the considered genetic variants and misclassification of diagnoses in the HES data. Furthermore, this work only investigated participants with European ancestry, and the findings may not be applicable to other ethnic groups. CONCLUSIONS: Our findings offer novel, to our knowledge, insight into previously unreported effects of iron status, highlighting a potential protective effect of higher iron status on hypercholesterolemia and a detrimental role on risk of skin and skin structure infections. Given the modifiable and variable nature of iron status, these findings warrant further investigation.
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spelling pubmed-65862572019-06-28 Associations of genetically determined iron status across the phenome: A mendelian randomization study Gill, Dipender Benyamin, Beben Moore, Luke S. P. Monori, Grace Zhou, Ang Koskeridis, Fotios Evangelou, Evangelos Laffan, Mike Walker, Ann P. Tsilidis, Konstantinos K. Dehghan, Abbas Elliott, Paul Hyppönen, Elina Tzoulaki, Ioanna PLoS Med Research Article BACKGROUND: Iron is integral to many physiological processes, and variations in its levels, even within the normal range, can have implications for health. The objective of this study was to explore the broad clinical effects of varying iron status. METHODS AND FINDINGS: Genome-wide association study (GWAS) summary data obtained from 48,972 European individuals (55% female) across 19 cohorts in the Genetics of Iron Status Consortium were used to identify 3 genetic variants (rs1800562 and rs1799945 in the hemochromatosis gene [HFE] and rs855791 in the transmembrane protease serine 6 gene [TMPRSS6]) that associate with increased serum iron, ferritin, and transferrin saturation and decreased transferrin levels, thus serving as instruments for systemic iron status. Phenome-wide association study (PheWAS) of these instruments was performed on 424,439 European individuals (54% female) in the UK Biobank who were aged 40–69 years when recruited from 2006 to 2010, with their genetic data linked to Hospital Episode Statistics (HES) from April, 1995 to March, 2016. Two-sample summary data mendelian randomization (MR) analysis was performed to investigate the effect of varying iron status on outcomes across the human phenome. MR–PheWAS analysis for the 3 iron status genetic instruments was performed separately and then pooled by meta-analysis. Correction was made for testing of multiple correlated phenotypes using a 5% false discovery rate (FDR) threshold. Heterogeneity between MR estimates for different instruments was used to indicate possible bias due to effects of the genetic variants through pathways unrelated to iron status. There were 904 distinct phenotypes included in the MR–PheWAS analyses. After correcting for multiple testing, the 3 genetic instruments for systemic iron status demonstrated consistent evidence of a causal effect of higher iron status on decreasing risk of traits related to anemia (iron deficiency anemia: odds ratio [OR] scaled to a standard deviation [SD] increase in genetically determined serum iron levels 0.72, 95% confidence interval [CI] 0.64–0.81, P = 4 × 10(−8)) and hypercholesterolemia (hypercholesterolemia: OR 0.88, 95% CI 0.83–0.93, P = 2 × 10(−5)) and increasing risk of traits related to infection of the skin and related structures (cellulitis and abscess of the leg: OR 1.25, 95% CI 1.10–1.42, P = 6 × 10(−4)). The main limitations of this study relate to possible bias from pleiotropic effects of the considered genetic variants and misclassification of diagnoses in the HES data. Furthermore, this work only investigated participants with European ancestry, and the findings may not be applicable to other ethnic groups. CONCLUSIONS: Our findings offer novel, to our knowledge, insight into previously unreported effects of iron status, highlighting a potential protective effect of higher iron status on hypercholesterolemia and a detrimental role on risk of skin and skin structure infections. Given the modifiable and variable nature of iron status, these findings warrant further investigation. Public Library of Science 2019-06-20 /pmc/articles/PMC6586257/ /pubmed/31220083 http://dx.doi.org/10.1371/journal.pmed.1002833 Text en © 2019 Gill 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gill, Dipender
Benyamin, Beben
Moore, Luke S. P.
Monori, Grace
Zhou, Ang
Koskeridis, Fotios
Evangelou, Evangelos
Laffan, Mike
Walker, Ann P.
Tsilidis, Konstantinos K.
Dehghan, Abbas
Elliott, Paul
Hyppönen, Elina
Tzoulaki, Ioanna
Associations of genetically determined iron status across the phenome: A mendelian randomization study
title Associations of genetically determined iron status across the phenome: A mendelian randomization study
title_full Associations of genetically determined iron status across the phenome: A mendelian randomization study
title_fullStr Associations of genetically determined iron status across the phenome: A mendelian randomization study
title_full_unstemmed Associations of genetically determined iron status across the phenome: A mendelian randomization study
title_short Associations of genetically determined iron status across the phenome: A mendelian randomization study
title_sort associations of genetically determined iron status across the phenome: a mendelian randomization study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6586257/
https://www.ncbi.nlm.nih.gov/pubmed/31220083
http://dx.doi.org/10.1371/journal.pmed.1002833
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