Discovering Shared Mechanisms of Autoimmunity using Omics Technologies 2259933
Abstract
Abstract Introduction Autoimmunity is defined by disruption of the immune system, where instead of defending the body, the immune system turns on itself and attacks its own organs instead. While this immune dysfunction connects autoimmune diseases, each disease is distinguished by the organs involved and clinical features that characterize its presentation. The goals of this study are to utilize single-cell sequencing technologies to characterize peripheral immune cells and identify shared and unique mechanisms of autoimmunity. Methods To typify shared mechanisms of autoimmunity, samples were obtained across healthy controls and multiple diseases: Lupus, RA, IgG4-RD, Graves’ Disease, Hashimoto’s Disease, MS, T1D, Celiac Disease and ICI-related diabetes and thyroiditis. PBMCs were used to generate scRNAseq and paired protein data (10x Genomics). In-house data and multiple external data sets were aligned to the same genome and integrated (Harmony). Iterative clustering was used to distinguish cell subsets. Further downstream analysis includes abundance, differentially expressed gene analysis, and identification of cellular and transcriptional programs. Results Using the above pipeline we characterized 3.5M peripheral immune cells and identified 45 unique cell subsets. We are able to both redemonstrate known biology such as CD4+ lymphopenia across multiple autoimmune diseases, and highlight novel disease-specific findings such as monocyte subset expansion with interferon signature in a subset of diseases. The single-cell data also enables mapping the cellular context of autoimmune disease GWAS susceptibility variants, furthering our understanding of disease pathogenesis. Conclusion Our initial results demonstrate that autoimmune diseases have shared mechanisms that broadly propagate autoimmunity and unique transcriptional mechanisms that can drive specific disease states. Further definition of these shared and unique pathways can lead to the discovery of cross-disease and disease-specific therapeutic targets. Funding Source CZI, NIH, LRA, Breakthrough T1D, NMSS, Manton Foundation, Melanoma Research Alliance, Damon Runyon Cancer Foundation, Schmidt Futures, Broad Institute, MGH Topic Categories Immune Mechanisms of Human Disease (HUM)
Article Details
Journal Info
The Journal of Immunology
American Association of Immunologists
Authors (26)
Jacquelyn Nestor
Massachusetts Gen. Hosp., Harvard Med. Sch
Sergio Aguilar Fernandez
Massachusetts General Hospital
Wamia Said
Massachusetts General Hospital
Adrien Antoinette
Massachusetts General Hospital
Pragya Rawat
Massachusetts General Hospital
Roya Best
Massachusetts General Hospital, Broad Institute
Elizabeth Tuttle
Massachusetts General Hospital, Broad Institute
Inigo Clemente Larramendi
Massachusetts General Hospital
Courtney Ambrose
Massachusetts General Hospital, Broad Institute
Christopher Stueber
Massachusetts General Hospital, Broad Institute
Nandini Samanta
Sidney Martin
Hoang Anh Tran
Massachusetts General Hospital
April Jorge
Massachusetts General Hospital
Nir Hacohen
Tanuja Chitnis
Brigham and Women’s Hospital, Mass General Brigham, Harvard Medical School
Kevin Wei
Deepak Rao
Maureen Leonard
Massachusetts General Hospital
Michelle Rengarajan
Department of Medicine, Massachusetts General Hospital, Boston
Pritha Sen
Andrew Luster
Massachusetts General Hospital/ Harvard Medical School/ Broad Institute of Massachusetts Institute of Technology and Harvard
Holger Heyn
Shyam Prabhakar
Gary Reynolds
Alexandra-Chloé Villani