PLoS Genetics · 2005 · 58 citations · 50 references
EngineeringImmunologyMolecular BiologyCytoskeletonGene Expression ProfilingMusculoskeletal ResearchInflammatory ArthritisInflammationRheumatoid DisorderOsteoarthritisSynovial FibroblastsInflammatory Rheumatic DiseaseRheumatoid ArthritisConnective Tissue DiseaseMechanobiologyRheumatologyAutoimmune DiseaseOligonucleotide Microarray HybridizationsRheumatic DiseasesCell TraffickingPathway AnalysisInflammatory DiseaseFunctional GenomicsCell BiologyCytoskeletal RearrangementsModeled Rheumatoid ArthritisTwin ApproachSystems BiologyMedicineExtracellular Matrix
Rheumatoid arthritis is a chronic inflammatory disease with a high prevalence and substantial socioeconomic burden. Despite intense research efforts, its aetiology and pathogenesis remain poorly understood. To identify novel genes and/or cellular pathways involved in the pathogenesis of the disease, we utilized a well-recognized tumour necrosis factor-driven animal model of this disease and performed high-throughput expression profiling with subtractive cDNA libraries and oligonucleotide microarray hybridizations, coupled with independent statistical analysis. This twin approach was validated by a number of different methods in other animal models of arthritis as well as in human patient samples, thus creating a unique list of disease modifiers of potential therapeutic value. Importantly, and through the integration of genetic linkage analysis and Gene Ontology-assisted functional discovery, we identified the gelsolin-driven synovial fibroblast cytoskeletal rearrangements as a novel pathophysiological determinant of the disease.
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Basic local alignment search tool
Stephen F. Altschul, Warren Gish, Webb Miller et al. · Journal of Molecular Biology · 1990 · 92.8K citations
Gene Ontology: tool for the unification of biology
Michael Ashburner, Catherine A. Ball, Judith A. Blake et al. · Nature Genetics · 2000 · 43.3K citations · Full text
Functional Genomics, Engineering, Bioinformatics Database +11