| Literature DB >> 33505018 |
Chirag Jain1,2, Fataneh Fathi Far1,3, Sarah Homberg1,3, Katharina Wißmiller1,3, Felizitas Gräfin von Hahn1,3, Aurelia Raducanu1,2, Silvia Schirge1,2, Michael Sterr1,2,3, Sara Bilekova1,3, Johanna Siehler1,3, Julius Wiener4,5, Lena Oppenländer1,3, Amir Morshedi1, Aimée Bastidas-Ponce1,2,3, Gustav Collden6, Martin Irmler2,7, Johannes Beckers2,7,8, Annette Feuchtinger9, Michal Grzybek2,10, Christin Ahlbrecht2,11,12, Regina Feederle13, Oliver Plettenburg2,11,12, Timo D Müller2,6, Matthias Meier4,5, Matthias H Tschöp2,3,6, Ünal Coskun2,10,14, Heiko Lickert15,16,17.
Abstract
Resistance to insulin and insulin-like growth factor 1 (IGF1) in pancreatic β-cells causes overt diabetes in mice; thus, therapies that sensitize β-cells to insulin may protect patients with diabetes against β-cell failure1-3. Here we identify an inhibitor of insulin receptor (INSR) and IGF1 receptor (IGF1R) signalling in mouse β-cells, which we name the insulin inhibitory receptor (inceptor; encoded by the gene Iir). Inceptor contains an extracellular cysteine-rich domain with similarities to INSR and IGF1R4, and a mannose 6-phosphate receptor domain that is also found in the IGF2 receptor (IGF2R)5. Knockout mice that lack inceptor (Iir-/-) exhibit signs of hyperinsulinaemia and hypoglycaemia, and die within a few hours of birth. Molecular and cellular analyses of embryonic and postnatal pancreases from Iir-/- mice showed an increase in the activation of INSR-IGF1R in Iir-/- pancreatic tissue, resulting in an increase in the proliferation and mass of β-cells. Similarly, inducible β-cell-specific Iir-/- knockout in adult mice and in ex vivo islets led to an increase in the activation of INSR-IGF1R and increased proliferation of β-cells, resulting in improved glucose tolerance in vivo. Mechanistically, inceptor interacts with INSR-IGF1R to facilitate clathrin-mediated endocytosis for receptor desensitization. Blocking this physical interaction using monoclonal antibodies against the extracellular domain of inceptor resulted in the retention of inceptor and INSR at the plasma membrane to sustain the activation of INSR-IGF1R in β-cells. Together, our findings show that inceptor shields insulin-producing β-cells from constitutive pathway activation, and identify inceptor as a potential molecular target for INSR-IGF1R sensitization and diabetes therapy.Entities:
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Year: 2021 PMID: 33505018 DOI: 10.1038/s41586-021-03225-8
Source DB: PubMed Journal: Nature ISSN: 0028-0836 Impact factor: 49.962