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1.
Mol Cell Endocrinol ; 325(1-2): 36-45, 2010 Aug 30.
Article in English | MEDLINE | ID: mdl-20638985

ABSTRACT

The novel islet-specific protein PANcreatic DERived Factor (PANDER; FAM3B) has been extensively characterized with respect to the beta-cell, and these studies suggest a potential function for PANDER in the regulation of glucose homeostasis. Little is known regarding PANDER in pancreatic -cells, which are critically involved in maintaining euglycemia. Here we present the first report elucidating the expression and regulation of PANDER within the alpha-cell. Pander mRNA and protein are detected in alpha-cells, with primary localization to a glucagon-negative granular cytosolic compartment. PANDER secretion from alpha-cells is nutritionally and hormonally regulated by l-arginine and insulin, demonstrating similarities and differences with glucagon. Signaling via the insulin receptor (IR) through the PI3K and Akt/PKB node is required for insulin-stimulated PANDER release. The separate localization of PANDER and glucagon is consistent with their differential regulation, and the effect of insulin suggests a paracrine/endocrine effect on PANDER release. This provides further insight into the potential glucose-regulatory role of PANDER.


Subject(s)
Cytokines/genetics , Cytokines/metabolism , Glucagon-Secreting Cells/metabolism , Animals , Arginine/pharmacology , Cell Culture Techniques , Cells, Cultured , Dose-Response Relationship, Drug , Gene Expression , Glucagon-Secreting Cells/drug effects , Glucose/pharmacology , In Situ Hybridization, Fluorescence , Insulin/metabolism , Insulin/pharmacology , Male , Mice , Mice, Inbred C57BL , Paracrine Communication/drug effects , Paracrine Communication/physiology , Tissue Distribution
2.
Diabetes ; 59(9): 2209-18, 2010 Sep.
Article in English | MEDLINE | ID: mdl-20566664

ABSTRACT

OBJECTIVE: Pancreatic-derived factor (PANDER, FAM3B) is a pancreatic islet-specific cytokine-like protein that is secreted from beta-cells upon glucose stimulation. The biological function of PANDER is unknown, and to address this we generated and characterized a PANDER knockout mouse. RESEARCH DESIGN AND METHODS: To generate the PANDER knockout mouse, the PANDER gene was disrupted and its expression was inhibited by homologous recombination via replacement of the first two exons, secretion signal peptide and transcriptional start site, with the neomycin gene. PANDER(-/-) mice were then phenotyped by a number of in vitro and in vivo tests to evaluate potential effects on glucose regulation, insulin sensitivity, and beta-cell morphology and function. RESULTS: Glucose tolerance tests demonstrated significantly higher blood glucose levels in PANDER(-/-) versus wild-type male mice. To identify the mechanism of the glucose intolerance, insulin sensitivity and pancreatic beta-cell function were examined. Hyperinsulinemic-euglycemic clamps and insulin tolerance testing showed similar insulin sensitivity for both the PANDER(-/-) and wild-type mice. The in vivo insulin response following intraperitoneal glucose injection surprisingly produced significantly higher insulin levels in the PANDER(-/-) mice, whereas insulin release was blunted with arginine administration. Islet perifusion and calcium imaging studies showed abnormal responses of the PANDER(-/-) islets to glucose stimulation. In contrast, neither islet architecture nor insulin content was impacted by the loss of PANDER. Interestingly, the elevated insulin levels identified in vivo were attributed to decreased hepatic insulin clearance in the PANDER(-/-) islets. Taken together, these results demonstrated decreased pancreatic beta-cell function in the PANDER(-/-) mouse. CONCLUSIONS: These results support a potential role of PANDER in the pancreatic beta-cell for regulation or facilitation of insulin secretion.


Subject(s)
Cytokines/deficiency , Insulin-Secreting Cells/physiology , Adenosine Diphosphate/metabolism , Adenosine Triphosphate/metabolism , Animals , Arginine/pharmacology , Blood Glucose/metabolism , Cytokines/genetics , DNA Primers , Gene Amplification , Glucagon-Like Peptide 1/genetics , Glucose/pharmacology , Glucose Clamp Technique/methods , Glucose Tolerance Test , Insulin/metabolism , Insulin Secretion , Insulin-Secreting Cells/drug effects , Insulin-Secreting Cells/metabolism , Male , Mice , Mice, Knockout , Phenotype , Reference Values , Reverse Transcriptase Polymerase Chain Reaction
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