Genome-wide pathway analysis identifies VEGF pathway association with oral ulceration in systemic lupus erythematosus
Author
Aterido, Adrià; Julià, Antonio; Carreira, Patricia; Blanco, Ricardo; López-Longo, José Javier; Pérez Venegas, José Javier; Olivé, Àlex; Andreu Sánchez, José Luis
Entity
UAM. Departamento de MedicinaPublisher
BioMed Central Ltd.Date
2017-06-15Citation
10.1186/s13075-017-1345-6
Arthritis Research and Therapy 19.1 (2017): 138
ISSN
1478-6354 (pirnt); 1478-6362 (online)DOI
10.1186/s13075-017-1345-6Funded by
This study was funded by the Spanish Ministry of Economy and Competitiveness (grant numbers: PSE-010000-2006-6 and IPT-010000-2010-36 and by the “Agència de Gestió d’Ajuts Universitaris i de Recerca” (AGAUR, Generalitat de Catalunya, FI-DGR 2016, grant number: 00587)Project
Gobierno de España. PSE-010000-2006-6; Gobierno de España. IPT-010000-2010- 36Editor's Version
https://doi.org/10.1186/s13075-017-1345-6Subjects
Clinical phenotypes; Genetics; Genome-wide pathway analysis; Oral ulceration; Systemic lupus erythematosus; MedicinaRights
© 2017 The Author(s)Abstract
Background: Systemic lupus erythematosus (SLE) is a genetically complex rheumatic disease characterized by heterogeneous clinical manifestations of unknown etiology. Recent studies have suggested the existence of a genetic basis for SLE heterogeneity. The objective of the present study was to identify new genetic variation associated with the clinically relevant phenotypes in SLE. Methods: A two-stage pathway-based approach was used to identify the genetic variation associated with the main clinical phenotypes in SLE. In the discovery stage, 482 SLE patients were genotyped using Illumina Human Quad610 microarrays. Association between 798 reference genetic pathways from the Molecular Signatures Database and 11 SLE phenotypes was tested using the set-based method implemented in PLINK software. Pathways significantly associated after multiple test correction were subsequently tested for replication in an independent cohort of 425 SLE patients. Using an in silico approach, we analyzed the functional effects of common SLE therapies on the replicated genetic pathways. The association of known SLE risk variants with the development of the clinical phenotypes was also analyzed. Results: In the discovery stage, we found a significant association between the vascular endothelial growth factor (VEGF) pathway and oral ulceration (P value for false discovery rate (P FDR ) < 0.05), and between the negative regulation signaling pathway of retinoic acid inducible gene-I/melanoma differentiation associated gene 5 and the production of antinuclear antibodies (P FDR < 0.05). In the replication stage, we validated the association between the VEGF pathway and oral ulceration. Therapies commonly used to treat mucocutaneous phenotypes in SLE were found to strongly influence VEGF pathway gene expression (P = 4.60e-4 to 5.38e-14). Analysis of known SLE risk loci identified a strong association between PTPN22 and the risk of hematologic disorder and with the development of antinuclear antibodies. Conclusions: The present study has identified VEGF genetic pathway association with the risk of oral ulceration in SLE. New therapies targeting the VEGF pathway could be more effective in reducing the severity of this phenotype. These findings represent a first step towards the understanding of the genetic basis of phenotype heterogeneity in SLE
Files in this item
Google Scholar:Aterido, Adrià
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Julià, Antonio
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Carreira, Patricia
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Blanco, Ricardo
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López-Longo, José Javier
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Pérez Venegas, José Javier
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Olivé, Àlex
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Andreu Sánchez, José Luis
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Aguirre-Zamorano, Maria Ángeles
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Vela, Paloma
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Nolla, Joan M.
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Marenco-de la Fuente, José Luís
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Zea, Antonio
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Pego, José María
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Freire, Mercedes
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Díez, Elvira
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López-Lasanta, María
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López-Corbeto, Mireia
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Palau, Núria
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Tortosa, Raül
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Gelpí, Josep Lluís
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Absher, Devin
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Myers, Richard M.
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Fernández-Nebro, Antonio
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Marsal, Sara
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