Caspase-1 Is Not Required for Type 1 Diabetes in the NOD Mouse

Author:

Schott William H.1,Haskell Bradford D.1,Tse Hubert M.2,Milton Martha J.2,Piganelli Jon D.2,Choisy-Rossi Caroline Morgane1,Reifsnyder Peter C.1,Chervonsky Alexander V.1,Leiter Edward H.1

Affiliation:

1. The Jackson Laboratory, Bar Harbor, Maine

2. Department of Pediatrics, Division of Immunogenetics, Diabetes Institute, University of Pittsburgh, School of Medicine, Rangos Research Center, Children’s Hospital of Pittsburgh, Pittsburgh, Pennsylvania

Abstract

Interleukin (IL)-1β and IL-18 are two cytokines associated with the immunopathogenesis of diabetes in NOD mice. Both of these cytokines are cleaved by caspase-1 to their biologically active forms. IL-1 is a proinflammatory cytokine linked to β-cell damage, and IL-18 stimulates production of interferon (IFN)γ in synergy with IL-12. To examine the effects produced by caspase-1 deficiency on diabetes development in NOD/Lt mice, a disrupted Casp1 gene was introduced by a speed congenic technique. Casp1−/− bone marrow-derived macrophages stimulated with lipopolysaccharide produced no detectable IL-18, fourfold lower IL-1β, and 20–30% less IL-1α than macrophages from wild-type Casp1+/+ or Casp1+/− controls. Unexpectedly, despite reduced IL-1 and IL-18, there was no change in the rate of diabetes or in total incidence as compared with that in wild-type NOD mice. IL-1 reportedly makes an important pathological contribution in the multidose streptozotocin model of diabetes; however, there was no difference in sensitivity to streptozotocin between NOD mice and NOD.Casp1−/− mice at 40 mg/kg body wt or at 25 mg/kg body wt dosage levels. These findings show that caspase-1 processing of IL-1β and IL-18 is not absolutely required for mediation of spontaneous or chemically induced diabetes pathogenesis in the NOD mouse.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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