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Frontiers in Physiology|November 9, 2020
Circadian, Sleep and Caloric Intake Phenotyping in Type 2 Diabetes Patients With Rare Melatonin Receptor 2 Mutations and Controls: A Pilot StudyAkram Imam, Eva C Winnebeck, Nina Buchholz, et al.Cell Reports|February 29, 2024
Purification of time-resolved insulin granules reveals proteomic and lipidomic changes during granule agingMartin Neukam, Pia Sala, Andreas-David Brunner, et al.Nature Protocols|November 14, 2014
Using pancreas tissue slices for in situ studies of islet of Langerhans and acinar cell biologyAnja Marciniak, Christian M Cohrs, Vasiliki Tsata, et al.JCI Insight|February 9, 2018
Virus-like infection induces human β cell dedifferentiationMasaya Oshima, Klaus-Peter Knoch, Marc Diedisheim, et al.Molecular Metabolism|September 23, 2016
The F-actin modifier villin regulates insulin granule dynamics and exocytosis downstream of islet cell autoantigen 512Hassan Mziaut, Bernard Mulligan, Peter Hoboth, et al.Molecular Metabolism|January 11, 2020
MiR-132 controls pancreatic beta cell proliferation and survival through Pten/Akt/Foxo3 signalingHassan Mziaut, Georg Henniger, Katharina Ganss, et al.Islets|November 25, 2010
Impaired insulin turnover in islets from type 2 diabetic patientsFlorian Ehehalt, Klaus Knoch, Katja Erdmann, et al.Plos One|October 2, 2010
β2-Syntrophin is a Cdk5 substrate that restrains the motility of insulin secretory granulesSandra Schubert, Klaus-Peter Knoch, Joke Ouwendijk, et al.Molecular and Cellular Biology|January 7, 2015
Stability of proICA512/IA-2 and its targeting to insulin secretory granules require β4-sheet-mediated dimerization of its ectodomain in the endoplasmic reticulumJuha M Torkko, M Evangelina Primo, Ronald Dirkx, et al.Diabetes|August 10, 2013
Age-dependent labeling and imaging of insulin secretory granulesAnna Ivanova, Yannis Kalaidzidis, Ronald Dirkx, et al.Pageof 12