Pharmacological inhibition of tyrosine protein-kinase 2 reduces islet inflammation and delays type 1 diabetes onset in mice

dc.contributor.authorSyed, Farooq
dc.contributor.authorBallew, Olivia
dc.contributor.authorLee, Chih-Chun
dc.contributor.authorRana, Jyoti
dc.contributor.authorKrishnan, Preethi
dc.contributor.authorCastela, Angela
dc.contributor.authorWeaver, Staci A.
dc.contributor.authorChalasani, Namratha Shivani
dc.contributor.authorThomaidou, Sofia F.
dc.contributor.authorDemine, Stephane
dc.contributor.authorChang, Garrick
dc.contributor.authorde Brachène, Alexandra Coomans
dc.contributor.authorAlvelos, Maria Ines
dc.contributor.authorMarselli, Lorella
dc.contributor.authorOrr, Kara
dc.contributor.authorFelton, Jamie L.
dc.contributor.authorLiu, Jing
dc.contributor.authorMarchetti, Piero
dc.contributor.authorZaldumbide, Arnaud
dc.contributor.authorScheuner, Donalyn
dc.contributor.authorEizirik, Decio L.
dc.contributor.authorEvans-Molina, Carmella
dc.contributor.departmentPediatrics, School of Medicine
dc.date.accessioned2024-08-01T10:20:52Z
dc.date.available2024-08-01T10:20:52Z
dc.date.issued2024-05-09
dc.description.abstractTyrosine protein-kinase 2 (TYK2), a member of the Janus kinase family, mediates inflammatory signaling through multiple cytokines, including interferon-α (IFNα), interleukin (IL)-12, and IL-23. Missense mutations in TYK2 are associated with protection against type 1 diabetes (T1D), and inhibition of TYK2 shows promise in the management of other autoimmune conditions. Here, we evaluated the effects of specific TYK2 inhibitors (TYK2is) in pre-clinical models of T1D. First, human β cells, cadaveric donor islets, and iPSC-derived islets were treated in vitro with IFNα in combination with a small molecule TYK2i (BMS-986165 or a related molecule BMS-986202). TYK2 inhibition prevented IFNα-induced β cell HLA class I up-regulation, endoplasmic reticulum stress, and chemokine production. In co-culture studies, pre-treatment of β cells with a TYK2i prevented IFNα-induced activation of T cells targeting an epitope of insulin. In vivo administration of BMS-986202 in two mouse models of T1D (RIP-LCMV-GP mice and NOD mice) reduced systemic and tissue-localized inflammation, prevented β cell death, and delayed T1D onset. Transcriptional phenotyping of pancreatic islets, pancreatic lymph nodes (PLN), and spleen during early disease pathogenesis highlighted a role for TYK2 inhibition in modulating signaling pathways associated with inflammation, translational control, stress signaling, secretory function, immunity, and diabetes. Additionally, TYK2i treatment changed the composition of innate and adaptive immune cell populations in the blood and disease target tissues, resulting in an immune phenotype with a diminished capacity for β cell destruction. Overall, these findings indicate that TYK2i has beneficial effects in both the immune and endocrine compartments in models of T1D, thus supporting a path forward for testing TYK2 inhibitors in human T1D.
dc.eprint.versionPre-Print
dc.identifier.citationSyed F, Ballew O, Lee CC, et al. Pharmacological inhibition of tyrosine protein-kinase 2 reduces islet inflammation and delays type 1 diabetes onset in mice. Preprint. bioRxiv. 2024;2024.03.20.585925. Published 2024 May 9. doi:10.1101/2024.03.20.585925
dc.identifier.urihttps://hdl.handle.net/1805/42522
dc.language.isoen_US
dc.publisherbioRxiv
dc.relation.isversionof10.1101/2024.03.20.585925
dc.rightsCC0 1.0 Universalen
dc.rights.urihttps://creativecommons.org/publicdomain/zero/1.0
dc.sourcePMC
dc.subjectType 1 diabetes
dc.subjectβ cell
dc.subjectT cell
dc.subjectIslets of Langerhans
dc.subjectTyrosine protein-kinase 2 (TYK2)
dc.subjectInterferon-α
dc.titlePharmacological inhibition of tyrosine protein-kinase 2 reduces islet inflammation and delays type 1 diabetes onset in mice
dc.typeArticle
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