Publication: Integrative Analysis Reveals a Molecular Stratification of Systemic Autoimmune Diseases.
No Thumbnail Available
Identifiers
Date
2021-04-26
Authors
Barturen, Guillermo
Babaei, Sepideh
Català-Moll, Francesc
Martínez-Bueno, Manuel
Makowska, Zuzanna
Martorell-Marugán, Jordi
Carmona-Sáez, Pedro
Toro-Domínguez, Daniel
Carnero-Montoro, Elena
Teruel, María
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Clinical heterogeneity, a hallmark of systemic autoimmune diseases, impedes early diagnosis and effective treatment, issues that may be addressed if patients could be classified into groups defined by molecular pattern. This study was undertaken to identify molecular clusters for reclassifying systemic autoimmune diseases independently of clinical diagnosis. Unsupervised clustering of integrated whole blood transcriptome and methylome cross-sectional data on 955 patients with 7 systemic autoimmune diseases and 267 healthy controls was undertaken. In addition, an inception cohort was prospectively followed up for 6 or 14 months to validate the results and analyze whether or not cluster assignment changed over time. Four clusters were identified and validated. Three were pathologic, representing "inflammatory," "lymphoid," and "interferon" patterns. Each included all diagnoses and was defined by genetic, clinical, serologic, and cellular features. A fourth cluster with no specific molecular pattern was associated with low disease activity and included healthy controls. A longitudinal and independent inception cohort showed a relapse-remission pattern, where patients remained in their pathologic cluster, moving only to the healthy one, thus showing that the molecular clusters remained stable over time and that single pathogenic molecular signatures characterized each individual patient. Patients with systemic autoimmune diseases can be jointly stratified into 3 stable disease clusters with specific molecular patterns differentiating different molecular disease mechanisms. These results have important implications for future clinical trials and the study of nonresponse to therapy, marking a paradigm shift in our view of systemic autoimmune diseases.
Description
MeSH Terms
Adult
Aged
Antiphospholipid Syndrome
Arthritis, Rheumatoid
Autoimmune Diseases
Case-Control Studies
Cluster Analysis
Cross-Sectional Studies
Epigenome
Epigenomics
Female
Gene Expression Profiling
Humans
Inflammation
Interferons
Lupus Erythematosus, Systemic
Male
Middle Aged
Mixed Connective Tissue Disease
Scleroderma, Systemic
Sjogren's Syndrome
Undifferentiated Connective Tissue Diseases
Aged
Antiphospholipid Syndrome
Arthritis, Rheumatoid
Autoimmune Diseases
Case-Control Studies
Cluster Analysis
Cross-Sectional Studies
Epigenome
Epigenomics
Female
Gene Expression Profiling
Humans
Inflammation
Interferons
Lupus Erythematosus, Systemic
Male
Middle Aged
Mixed Connective Tissue Disease
Scleroderma, Systemic
Sjogren's Syndrome
Undifferentiated Connective Tissue Diseases