Single cell multi-omic analysis identifies key genes differentially expressed in innate lymphoid cells from COVID-19 patients

Kaushik, A.; Chang, I.; Han, X.; He, Z.; Komlosi, Z.I. [Komlósi, Zsolt (Pulmonológia), szerző] Genetikai, Sejt- és Immunbiológiai Intézet (SE / AOK / I); Ji, X.; Cao, S.; Akdis, C.A.; Boyd, S.; Pulendran, B.; Maecker, H.T.; Davis, M.M.; Chinthrajah, R.S.; DeKruyff, R.H.**; Nadeau, K.C. ✉

Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent: FRONTIERS IN IMMUNOLOGY 1664-3224 1664-3224 15 Paper: 1374828 , 13 p. 2024
  • SJR Scopus - Immunology: Q1
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  • (135637) Támogató: OTKA
Introduction: Innate lymphoid cells (ILCs) are enriched at mucosal surfaces where they respond rapidly to environmental stimuli and contribute to both tissue inflammation and healing. Methods: To gain insight into the role of ILCs in the pathology and recovery from COVID-19 infection, we employed a multi-omics approach consisting of Abseq and targeted mRNA sequencing to respectively probe the surface marker expression, transcriptional profile and heterogeneity of ILCs in peripheral blood of patients with COVID-19 compared with healthy controls. Results: We found that the frequency of ILC1 and ILC2 cells was significantly increased in COVID-19 patients. Moreover, all ILC subsets displayed a significantly higher frequency of CD69-expressing cells, indicating a heightened state of activation. ILC2s from COVID-19 patients had the highest number of significantly differentially expressed (DE) genes. The most notable genes DE in COVID-19 vs healthy participants included a) genes associated with responses to virus infections and b) genes that support ILC self-proliferation, activation and homeostasis. In addition, differential gene regulatory network analysis revealed ILC-specific regulons and their interactions driving the differential gene expression in each ILC. Discussion: Overall, this study provides mechanistic insights into the characteristics of ILC subsets activated during COVID-19 infection. Copyright © 2024 Kaushik, Chang, Han, He, Komlosi, Ji, Cao, Akdis, Boyd, Pulendran, Maecker, Davis, Chinthrajah, DeKruyff and Nadeau.
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2025-03-30 05:08