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Stress-impaired transcription factor expression and insulin secretion in transplanted human islets.

Abstract
Type 2 diabetes is characterized by insulin resistance, hyperglycemia, and progressive β cell dysfunction. Excess glucose and lipid impair β cell function in islet cell lines, cultured rodent and human islets, and in vivo rodent models. Here, we examined the mechanistic consequences of glucotoxic and lipotoxic conditions on human islets in vivo and developed and/or used 3 complementary models that allowed comparison of the effects of hyperglycemic and/or insulin-resistant metabolic stress conditions on human and mouse islets, which responded quite differently to these challenges. Hyperglycemia and/or insulin resistance impaired insulin secretion only from human islets in vivo. In human grafts, chronic insulin resistance decreased antioxidant enzyme expression and increased superoxide and amyloid formation. In human islet grafts, expression of transcription factors NKX6.1 and MAFB was decreased by chronic insulin resistance, but only MAFB decreased under chronic hyperglycemia. Knockdown of NKX6.1 or MAFB expression in a human β cell line recapitulated the insulin secretion defect seen in vivo. Contrary to rodent islet studies, neither insulin resistance nor hyperglycemia led to human β cell proliferation or apoptosis. These results demonstrate profound differences in how excess glucose or lipid influence mouse and human insulin secretion and β cell activity and show that reduced expression of key islet-enriched transcription factors is an important mediator of glucotoxicity and lipotoxicity.
AuthorsChunhua Dai, Nora S Kayton, Alena Shostak, Greg Poffenberger, Holly A Cyphert, Radhika Aramandla, Courtney Thompson, Ioannis G Papagiannis, Christopher Emfinger, Masakazu Shiota, John M Stafford, Dale L Greiner, Pedro L Herrera, Leonard D Shultz, Roland Stein, Alvin C Powers
JournalThe Journal of clinical investigation (J Clin Invest) Vol. 126 Issue 5 Pg. 1857-70 (05 02 2016) ISSN: 1558-8238 [Electronic] United States
PMID27064285 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't, Research Support, N.I.H., Extramural, Research Support, U.S. Gov't, Non-P.H.S.)
Chemical References
  • Homeodomain Proteins
  • MAFB protein, human
  • MafB Transcription Factor
  • NKX6-1 protein, human
Topics
  • Animals
  • Gene Expression Regulation
  • Heterografts
  • Homeodomain Proteins (biosynthesis, genetics)
  • Humans
  • Insulin-Secreting Cells (metabolism, pathology, transplantation)
  • Islets of Langerhans Transplantation
  • MafB Transcription Factor (biosynthesis, genetics)
  • Mice
  • Mice, Knockout

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