4.7 Article

Cadherin Engagement Improves Insulin Secretion of Single Human β-Cells

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DIABETES
卷 64, 期 3, 页码 887-896

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AMER DIABETES ASSOC
DOI: 10.2337/db14-0257

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资金

  1. Swiss National Science Foundation [310030-143462/1]
  2. Juvenile Diabetes Research Foundation [31-2012-783]
  3. Insuleman Foundation
  4. Swiss National Science Foundation (SNF) [310030_143462] Funding Source: Swiss National Science Foundation (SNF)

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The aim of this study was to assess whether cadherin-mediated adhesion of human islet cells was affected by insulin secretagogues and explore the role of cadherins in the secretory activity of -cells. Experiments were carried out with single islet cells adherent to chimeric proteins made of functional E-, N-, or P-cadherin ectodomains fused to the Fc fragment of immunoglobulin (E-cad/Fc, N-cad/Fc, and P-cad/Fc) and immobilized on an inert substrate. We observed that cadherin expression in islet cells was not affected by insulin secretagogues. Adhesion tests showed that islet cells attached to N-cad/Fc and E-cad/Fc acquired, in a time- and secretagogue-dependent manner, a spreading form that was inhibited by blocking cadherin antibodies. By reverse hemolytic plaque assay, we showed that glucose-stimulated insulin secretion of single -cells was increased by N-cad/Fc and E-cad/Fc adhesion compared with control. In the presence of E-cad/Fc and after glucose stimulation, we showed that total insulin secretion was six times higher in spreading -cells compared with round -cells. Furthermore, cadherin-mediated adhesion induced an asymmetric distribution of cortical actin in -cells. Our results demonstrate that adhesion of -cells to E- and N-cadherins is regulated by insulin secretagogues and that E- and N-cadherin engagement promotes stimulated insulin secretion.

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