Systematic immune cell dysregulation and molecular subtypes revealed by single-cell RNA-seq of subjects with type 1 diabetes

Mohammad Amin Honardoost(Agency for Science, Technology and Research), Andreas Adinatha(Agency for Science, Technology and Research), Florian Schmidt(Agency for Science, Technology and Research), Bobby Ranjan(Agency for Science, Technology and Research), Maryam Ghaeidamini(Agency for Science, Technology and Research), Nirmala Arul Rayan(Agency for Science, Technology and Research), Michelle Gek Liang Lim(Agency for Science, Technology and Research), Ignasius Joanito(Agency for Science, Technology and Research), Quy Xiao Xuan Lin(Agency for Science, Technology and Research), Deepa Rajagopalan(Agency for Science, Technology and Research), Shi Qi Mok(Agency for Science, Technology and Research), You Yi Hwang(Agency for Science, Technology and Research), Anis Larbi(Agency for Science, Technology and Research), Chiea Chuen Khor(Agency for Science, Technology and Research), Roger Foo(Agency for Science, Technology and Research), Bernhard O. Boehm(Agency for Science, Technology and Research), Shyam Prabhakar(Agency for Science, Technology and Research)
Genome Medicine
March 27, 2024
Cited by 34Open Access
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Abstract

BACKGROUND: cells. A comprehensive immune cell phenotype evaluation in T1DM has not been performed thus far at the single-cell level. METHODS: In this cross-sectional analysis, we generated a single-cell transcriptomic dataset of peripheral blood mononuclear cells (PBMCs) from 46 manifest T1DM (stage 3) cases and 31 matched controls. RESULTS: We surprisingly detected profound alterations in circulatory immune cells (1784 dysregulated genes in 13 immune cell types), far exceeding the count in the comparator systemic autoimmune disease SLE. Genes upregulated in T1DM were involved in WNT signaling, interferon signaling and migration of T/NK cells, antigen presentation by B cells, and monocyte activation. A significant fraction of these differentially expressed genes were also altered in T1DM pancreatic islets. We used the single-cell data to construct a T1DM metagene z-score (TMZ score) that distinguished cases and controls and classified patients into molecular subtypes. This score correlated with known prognostic immune markers of T1DM, as well as with drug response in clinical trials. CONCLUSIONS: Our study reveals a surprisingly strong systemic dimension at the level of immune cell network in T1DM, defines disease-relevant molecular subtypes, and has the potential to guide non-invasive test development and patient stratification.


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