Intracellular C3 protects β-cells from IL-1β-driven cytotoxicity via interaction with Fyn-related kinase

Author:

Kulak Klaudia1,Kuska Katarzyna1ORCID,Colineau Lucie1ORCID,Mckay Marina1ORCID,Maziarz Karolina1ORCID,Slaby Julia1ORCID,Blom Anna M.1ORCID,King Ben C.1ORCID

Affiliation:

1. Section of Medical Protein Chemistry, Department of Translational Medicine, Lund University, Malmö 214-28, Sweden

Abstract

One of the hallmarks of type 1 but also type 2 diabetes is pancreatic islet inflammation, associated with altered pancreatic islet function and structure, if unresolved. IL-1β is a proinflammatory cytokine which detrimentally affects β-cell function. In the course of diabetes, complement components, including the central complement protein C3, are deregulated. Previously, we reported high C3 expression in human pancreatic islets, with upregulation after IL-1β treatment. In the current investigation, using primary human and rodent material and CRISPR/Cas9 gene-edited β-cells deficient in C3, or producing only cytosolic C3 from a noncanonical in-frame start codon, we report a protective effect of C3 against IL-1β-induced β-cell death, that is attributed to the cytosolic fraction of C3. Further investigation revealed that intracellular C3 alleviates IL-1β-induced β-cell death, by interaction with and inhibition of Fyn-related kinase (FRK), which is involved in the response of β-cells to cytokines. Furthermore, these data were supported by increased β-cell death in vivo in a β-cell-specific C3 knockout mouse. Our data indicate that a functional, cytoprotective association exists between FRK and cytosolic C3.

Funder

Knut och Alice Wallenbergs Stiftelse

Diabetesfonden

Stiftelsen för Strategisk Forskning

Vetenskapsrådet

Direktör Albert Påhlssons Stiftelse

Magnus Bergvalls Stiftelse

Crafoordska Stiftelsen

Bo and Kerstin Hjelt Diabetes Foundation

Governmental grant for clinical research

Publisher

Proceedings of the National Academy of Sciences

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