The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.

Human genetic and animal studies have implicated the costimulatory molecule CD40 in the development of multiple sclerosis (MS). We investigated the cell specific gene and protein expression variation controlled by the CD40 genetic variant(s) associated with MS, i.e. the T-allele at rs1883832. Previo...

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Main Authors: Judith Field, Fernando Shahijanian, Stephen Schibeci, Australia and New Zealand MS Genetics Consortium (ANZgene), Laura Johnson, Melissa Gresle, Louise Laverick, Grant Parnell, Graeme Stewart, Fiona McKay, Trevor Kilpatrick, Helmut Butzkueven, David Booth
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4465929?pdf=render
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spelling doaj-167c9d164d5148e8bf2b8d3c545710f12020-11-24T21:30:01ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01106e012708010.1371/journal.pone.0127080The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.Judith FieldFernando ShahijanianStephen SchibeciAustralia and New Zealand MS Genetics Consortium (ANZgene)Laura JohnsonMelissa GresleLouise LaverickGrant ParnellGraeme StewartFiona McKayTrevor KilpatrickHelmut ButzkuevenDavid BoothHuman genetic and animal studies have implicated the costimulatory molecule CD40 in the development of multiple sclerosis (MS). We investigated the cell specific gene and protein expression variation controlled by the CD40 genetic variant(s) associated with MS, i.e. the T-allele at rs1883832. Previously we had shown that the risk allele is expressed at a lower level in whole blood, especially in people with MS. Here, we have defined the immune cell subsets responsible for genotype and disease effects on CD40 expression at the mRNA and protein level. In cell subsets in which CD40 is most highly expressed, B lymphocytes and dendritic cells, the MS-associated risk variant is associated with reduced CD40 cell-surface protein expression. In monocytes and dendritic cells, the risk allele additionally reduces the ratio of expression of full-length versus truncated CD40 mRNA, the latter encoding secreted CD40. We additionally show that MS patients, regardless of genotype, express significantly lower levels of CD40 cell-surface protein compared to unaffected controls in B lymphocytes. Thus, both genotype-dependent and independent down-regulation of cell-surface CD40 is a feature of MS. Lower expression of a co-stimulator of T cell activation, CD40, is therefore associated with increased MS risk despite the same CD40 variant being associated with reduced risk of other inflammatory autoimmune diseases. Our results highlight the complexity and likely individuality of autoimmune pathogenesis, and could be consistent with antiviral and/or immunoregulatory functions of CD40 playing an important role in protection from MS.http://europepmc.org/articles/PMC4465929?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Judith Field
Fernando Shahijanian
Stephen Schibeci
Australia and New Zealand MS Genetics Consortium (ANZgene)
Laura Johnson
Melissa Gresle
Louise Laverick
Grant Parnell
Graeme Stewart
Fiona McKay
Trevor Kilpatrick
Helmut Butzkueven
David Booth
spellingShingle Judith Field
Fernando Shahijanian
Stephen Schibeci
Australia and New Zealand MS Genetics Consortium (ANZgene)
Laura Johnson
Melissa Gresle
Louise Laverick
Grant Parnell
Graeme Stewart
Fiona McKay
Trevor Kilpatrick
Helmut Butzkueven
David Booth
The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
PLoS ONE
author_facet Judith Field
Fernando Shahijanian
Stephen Schibeci
Australia and New Zealand MS Genetics Consortium (ANZgene)
Laura Johnson
Melissa Gresle
Louise Laverick
Grant Parnell
Graeme Stewart
Fiona McKay
Trevor Kilpatrick
Helmut Butzkueven
David Booth
author_sort Judith Field
title The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
title_short The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
title_full The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
title_fullStr The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
title_full_unstemmed The MS Risk Allele of CD40 Is Associated with Reduced Cell-Membrane Bound Expression in Antigen Presenting Cells: Implications for Gene Function.
title_sort ms risk allele of cd40 is associated with reduced cell-membrane bound expression in antigen presenting cells: implications for gene function.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Human genetic and animal studies have implicated the costimulatory molecule CD40 in the development of multiple sclerosis (MS). We investigated the cell specific gene and protein expression variation controlled by the CD40 genetic variant(s) associated with MS, i.e. the T-allele at rs1883832. Previously we had shown that the risk allele is expressed at a lower level in whole blood, especially in people with MS. Here, we have defined the immune cell subsets responsible for genotype and disease effects on CD40 expression at the mRNA and protein level. In cell subsets in which CD40 is most highly expressed, B lymphocytes and dendritic cells, the MS-associated risk variant is associated with reduced CD40 cell-surface protein expression. In monocytes and dendritic cells, the risk allele additionally reduces the ratio of expression of full-length versus truncated CD40 mRNA, the latter encoding secreted CD40. We additionally show that MS patients, regardless of genotype, express significantly lower levels of CD40 cell-surface protein compared to unaffected controls in B lymphocytes. Thus, both genotype-dependent and independent down-regulation of cell-surface CD40 is a feature of MS. Lower expression of a co-stimulator of T cell activation, CD40, is therefore associated with increased MS risk despite the same CD40 variant being associated with reduced risk of other inflammatory autoimmune diseases. Our results highlight the complexity and likely individuality of autoimmune pathogenesis, and could be consistent with antiviral and/or immunoregulatory functions of CD40 playing an important role in protection from MS.
url http://europepmc.org/articles/PMC4465929?pdf=render
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