| Literature DB >> 35427178 |
Efthymia Kokkinou1, Ram Vinay Pandey2, Luca Mazzurana1, Irene Gutierrez-Perez2, Christopher Andrew Tibbitt1, Whitney Weigel1, Tea Soini1, Anna Carrasco1, Anna Rao1, Maho Nagasawa3, Suzanne M Bal3, Mattias Jangard4, Danielle Friberg5, Ulrik Lindforss6, Caroline Nordenvall6, Malin Ljunggren6, Staffan Haapaniemi7,8, Åsa V Keita9, Johan Söderholm8,9, Charlotte Hedin10,11, Hergen Spits3, Yenan T Bryceson2, Jenny Mjösberg1.
Abstract
Innate lymphoid cells (ILCs) are highly plastic and predominantly mucosal tissue-resident cells that contribute to both homeostasis and inflammation depending on the microenvironment. The discovery of naïve-like ILCs suggests an ILC differentiation process that is akin to naïve T cell differentiation. Delineating the mechanisms that underlie ILC differentiation in tissues is crucial for understanding ILC biology in health and disease. Here, we showed that tonsillar ILCs expressing CD45RA lacked proliferative activity, indicative of cellular quiescence. CD62L distinguished two subsets of CD45RA+ ILCs. CD45RA+CD62L+ ILCs (CD62L+ ILCs) resembled circulating naïve ILCs because they lacked the transcriptional, metabolic, epigenetic, and cytokine production signatures of differentiated ILCs. CD45RA+CD62L- ILCs (CD62L- ILCs) were epigenetically similar to CD62L+ ILCs but showed a transcriptional, metabolic, and cytokine production signature that was more akin to differentiated ILCs. CD62L+ and CD62L- ILCs contained uni- and multipotent precursors of ILC1s/NK cells and ILC3s. Differentiation of CD62L+ and CD62L- ILCs led to metabolic reprogramming including up-regulation of genes associated with glycolysis, which was needed for their effector functions after differentiation. CD62L- ILCs with preferential differentiation capacity toward IL-22-producing ILC3s accumulated in the inflamed mucosa of patients with inflammatory bowel disease. These data suggested distinct differentiation potential of CD62L+ and CD62L- ILCs between tissue microenvironments and identified that manipulation of these cells is a possible approach to restore tissue-immune homeostasis.Entities:
Mesh:
Year: 2022 PMID: 35427178 DOI: 10.1126/sciimmunol.abj8301
Source DB: PubMed Journal: Sci Immunol ISSN: 2470-9468