Reduced insulin exocytosis in human pancreatic β-cells with gene variants linked to type 2 diabetes

Research output: Contribution to journalJournal articleResearchpeer-review

  • Anders H Rosengren
  • Matthias Braun
  • Taman Mahdi
  • Sofia A Andersson
  • Mary E Travers
  • Makoto Shigeto
  • Enming Zhang
  • Peter Almgren
  • Claes Ladenvall
  • Annika S Axelsson
  • Anna Edlund
  • Morten Gram Pedersen
  • Reshma Ramracheya
  • Yunzhao Tang
  • Jonathan N Walker
  • Amy Barrett
  • Paul R V Johnson
  • Valeriya Lyssenko
  • Mark I McCarthy
  • Leif Groop
  • Albert Salehi
  • Anna L Gloyn
  • Erik Renström
  • Patrik Rorsman
  • Lena Eliasson
The majority of genetic risk variants for type 2 diabetes (T2D) affect insulin secretion, but the mechanisms through which they influence pancreatic islet function remain largely unknown. We functionally characterized human islets to determine secretory, biophysical, and ultrastructural features in relation to genetic risk profiles in diabetic and nondiabetic donors. Islets from donors with T2D exhibited impaired insulin secretion, which was more pronounced in lean than obese diabetic donors. We assessed the impact of 14 disease susceptibility variants on measures of glucose sensing, exocytosis, and structure. Variants near TCF7L2 and ADRA2A were associated with reduced glucose-induced insulin secretion, whereas susceptibility variants near ADRA2A, KCNJ11, KCNQ1, and TCF7L2 were associated with reduced depolarization-evoked insulin exocytosis. KCNQ1, ADRA2A, KCNJ11, HHEX/IDE, and SLC2A2 variants affected granule docking. We combined our results to create a novel genetic risk score for β-cell dysfunction that includes aberrant granule docking, decreased Ca(2+) sensitivity of exocytosis, and reduced insulin release. Individuals with a high risk score displayed an impaired response to intravenous glucose and deteriorating insulin secretion over time. Our results underscore the importance of defects in β-cell exocytosis in T2D and demonstrate the potential of cellular phenotypic characterization in the elucidation of complex genetic disorders.
Original languageEnglish
JournalDiabetes
Volume61
Issue number7
Pages (from-to)1726-33
Number of pages8
ISSN0046-0192
DOIs
Publication statusPublished - Jul 2012

    Research areas

  • Cells, Cultured, Diabetes Mellitus, Type 2, Exocytosis, Genetic Predisposition to Disease, Genetic Variation, Glucose Transporter Type 2, Homeodomain Proteins, Humans, Insulin, Insulin-Secreting Cells, KCNQ1 Potassium Channel, Potassium Channels, Inwardly Rectifying, Receptors, Adrenergic, alpha-2, Transcription Factor 7-Like 2 Protein, Transcription Factors

ID: 46404071