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Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes

The contribution of rare coding sequence variants to genetic susceptibility in complex disorders is an important but unresolved question. Most studies thus far have investigated a limited number of genes from regions which contain common disease associated variants. Here we investigate this in infla...

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Autores principales: Prescott, Natalie J., Lehne, Benjamin, Stone, Kristina, Lee, James C., Taylor, Kirstin, Knight, Jo, Papouli, Efterpi, Mirza, Muddassar M., Simpson, Michael A., Spain, Sarah L., Lu, Grace, Fraternali, Franca, Bumpstead, Suzannah J., Gray, Emma, Amar, Ariella, Bye, Hannah, Green, Peter, Chung-Faye, Guy, Hayee, Bu’Hussain, Pollok, Richard, Satsangi, Jack, Parkes, Miles, Barrett, Jeffrey C., Mansfield, John C., Sanderson, Jeremy, Lewis, Cathryn M., Weale, Michael E., Schlitt, Thomas, Mathew, Christopher G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4335459/
https://www.ncbi.nlm.nih.gov/pubmed/25671699
http://dx.doi.org/10.1371/journal.pgen.1004955
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author Prescott, Natalie J.
Lehne, Benjamin
Stone, Kristina
Lee, James C.
Taylor, Kirstin
Knight, Jo
Papouli, Efterpi
Mirza, Muddassar M.
Simpson, Michael A.
Spain, Sarah L.
Lu, Grace
Fraternali, Franca
Bumpstead, Suzannah J.
Gray, Emma
Amar, Ariella
Bye, Hannah
Green, Peter
Chung-Faye, Guy
Hayee, Bu’Hussain
Pollok, Richard
Satsangi, Jack
Parkes, Miles
Barrett, Jeffrey C.
Mansfield, John C.
Sanderson, Jeremy
Lewis, Cathryn M.
Weale, Michael E.
Schlitt, Thomas
Mathew, Christopher G.
author_facet Prescott, Natalie J.
Lehne, Benjamin
Stone, Kristina
Lee, James C.
Taylor, Kirstin
Knight, Jo
Papouli, Efterpi
Mirza, Muddassar M.
Simpson, Michael A.
Spain, Sarah L.
Lu, Grace
Fraternali, Franca
Bumpstead, Suzannah J.
Gray, Emma
Amar, Ariella
Bye, Hannah
Green, Peter
Chung-Faye, Guy
Hayee, Bu’Hussain
Pollok, Richard
Satsangi, Jack
Parkes, Miles
Barrett, Jeffrey C.
Mansfield, John C.
Sanderson, Jeremy
Lewis, Cathryn M.
Weale, Michael E.
Schlitt, Thomas
Mathew, Christopher G.
author_sort Prescott, Natalie J.
collection PubMed
description The contribution of rare coding sequence variants to genetic susceptibility in complex disorders is an important but unresolved question. Most studies thus far have investigated a limited number of genes from regions which contain common disease associated variants. Here we investigate this in inflammatory bowel disease by sequencing the exons and proximal promoters of 531 genes selected from both genome-wide association studies and pathway analysis in pooled DNA panels from 474 cases of Crohn’s disease and 480 controls. 80 variants with evidence of association in the sequencing experiment or with potential functional significance were selected for follow up genotyping in 6,507 IBD cases and 3,064 population controls. The top 5 disease associated variants were genotyped in an extension panel of 3,662 IBD cases and 3,639 controls, and tested for association in a combined analysis of 10,147 IBD cases and 7,008 controls. A rare coding variant p.G454C in the BTNL2 gene within the major histocompatibility complex was significantly associated with increased risk for IBD (p = 9.65x10(−10), OR = 2.3[95% CI = 1.75–3.04]), but was independent of the known common associated CD and UC variants at this locus. Rare (<1%) and low frequency (1–5%) variants in 3 additional genes showed suggestive association (p<0.005) with either an increased risk (ARIH2 c.338-6C>T) or decreased risk (IL12B p.V298F, and NICN p.H191R) of IBD. These results provide additional insights into the involvement of the inhibition of T cell activation in the development of both sub-phenotypes of inflammatory bowel disease. We suggest that although rare coding variants may make a modest overall contribution to complex disease susceptibility, they can inform our understanding of the molecular pathways that contribute to pathogenesis.
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spelling pubmed-43354592015-03-04 Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes Prescott, Natalie J. Lehne, Benjamin Stone, Kristina Lee, James C. Taylor, Kirstin Knight, Jo Papouli, Efterpi Mirza, Muddassar M. Simpson, Michael A. Spain, Sarah L. Lu, Grace Fraternali, Franca Bumpstead, Suzannah J. Gray, Emma Amar, Ariella Bye, Hannah Green, Peter Chung-Faye, Guy Hayee, Bu’Hussain Pollok, Richard Satsangi, Jack Parkes, Miles Barrett, Jeffrey C. Mansfield, John C. Sanderson, Jeremy Lewis, Cathryn M. Weale, Michael E. Schlitt, Thomas Mathew, Christopher G. PLoS Genet Research Article The contribution of rare coding sequence variants to genetic susceptibility in complex disorders is an important but unresolved question. Most studies thus far have investigated a limited number of genes from regions which contain common disease associated variants. Here we investigate this in inflammatory bowel disease by sequencing the exons and proximal promoters of 531 genes selected from both genome-wide association studies and pathway analysis in pooled DNA panels from 474 cases of Crohn’s disease and 480 controls. 80 variants with evidence of association in the sequencing experiment or with potential functional significance were selected for follow up genotyping in 6,507 IBD cases and 3,064 population controls. The top 5 disease associated variants were genotyped in an extension panel of 3,662 IBD cases and 3,639 controls, and tested for association in a combined analysis of 10,147 IBD cases and 7,008 controls. A rare coding variant p.G454C in the BTNL2 gene within the major histocompatibility complex was significantly associated with increased risk for IBD (p = 9.65x10(−10), OR = 2.3[95% CI = 1.75–3.04]), but was independent of the known common associated CD and UC variants at this locus. Rare (<1%) and low frequency (1–5%) variants in 3 additional genes showed suggestive association (p<0.005) with either an increased risk (ARIH2 c.338-6C>T) or decreased risk (IL12B p.V298F, and NICN p.H191R) of IBD. These results provide additional insights into the involvement of the inhibition of T cell activation in the development of both sub-phenotypes of inflammatory bowel disease. We suggest that although rare coding variants may make a modest overall contribution to complex disease susceptibility, they can inform our understanding of the molecular pathways that contribute to pathogenesis. Public Library of Science 2015-02-11 /pmc/articles/PMC4335459/ /pubmed/25671699 http://dx.doi.org/10.1371/journal.pgen.1004955 Text en © 2015 Prescott 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
Prescott, Natalie J.
Lehne, Benjamin
Stone, Kristina
Lee, James C.
Taylor, Kirstin
Knight, Jo
Papouli, Efterpi
Mirza, Muddassar M.
Simpson, Michael A.
Spain, Sarah L.
Lu, Grace
Fraternali, Franca
Bumpstead, Suzannah J.
Gray, Emma
Amar, Ariella
Bye, Hannah
Green, Peter
Chung-Faye, Guy
Hayee, Bu’Hussain
Pollok, Richard
Satsangi, Jack
Parkes, Miles
Barrett, Jeffrey C.
Mansfield, John C.
Sanderson, Jeremy
Lewis, Cathryn M.
Weale, Michael E.
Schlitt, Thomas
Mathew, Christopher G.
Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title_full Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title_fullStr Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title_full_unstemmed Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title_short Pooled Sequencing of 531 Genes in Inflammatory Bowel Disease Identifies an Associated Rare Variant in BTNL2 and Implicates Other Immune Related Genes
title_sort pooled sequencing of 531 genes in inflammatory bowel disease identifies an associated rare variant in btnl2 and implicates other immune related genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4335459/
https://www.ncbi.nlm.nih.gov/pubmed/25671699
http://dx.doi.org/10.1371/journal.pgen.1004955
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