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β-Cell keratin 8 maintains islet mechanical integrity, mitochondrial ultrastructure, and β-cell glucose transporter 2 plasma membrane targeting
Tekijät: Baghestani, Sarah; Haldin, Caroline; Kosijer, Petar; Alam, Catharina M.; Toivola, Diana M.
Kustantaja: AMER PHYSIOLOGICAL SOC
Kustannuspaikka: Rockville
Julkaisuvuosi: 2024
Journal: American Journal of Physiology - Cell Physiology
Lehden akronyymi: AM J PHYSIOL-CELL PH
Vuosikerta: 327
Numero: 2
Aloitussivu: C462
Lopetussivu: C476
Sivujen määrä: 15
ISSN: 0363-6143
eISSN: 1522-1563
DOI: https://doi.org/10.1152/ajpcell.00123.2024
Verkko-osoite: https://doi.org/10.1152/ajpcell.00123.2024
Rinnakkaistallenteen osoite: https://research.utu.fi/converis/portal/detail/Publication/457698823
Islet β-cell dysfunction is an underlying factor for type I diabetes (T1D) development. Insulin sensing and secretion are tightly regulated in β-cells at multiple subcellular levels. The epithelial intermediate filament (IF) protein keratin (K) 8 is the main β-cell keratin, constituting the filament network with K18. To identify the cell-autonomous functions of K8 in β-cells, mice with targeted deletion of β-cell K8 (K8flox/flox; Ins-Cre) were analyzed for islet morphology, ultrastructure, and integrity, as well as blood glucose regulation and streptozotocin (STZ)-induced diabetes development. Glucose transporter 2 (GLUT2) localization was studied in β-cells in vivo and in MIN6 cells with intact or disrupted K8/K18 filaments. Loss of β-cell K8 leads to a major reduction in K18. Islets without β-cell K8 are more fragile, and these β-cells display disjointed plasma membrane organization with less membranous E-cadherin and smaller mitochondria with diffuse cristae. Lack of β-cell K8 also leads to a reduced glucose-stimulated insulin secretion (GSIS) response in vivo, despite undisturbed systemic blood glucose regulation. K8flox/flox, Ins-Cre mice have a decreased sensitivity to STZ compared with K8 wild-type mice, which is in line with decreased membranous GLUT2 expression observed in vivo, as GLUT2 is required for STZ uptake in β-cells. In vitro, MIN6 cell plasma membrane GLUT2 is rescued in cells overexpressing K8/K18 filaments but mistargeted in cells with disrupted K8/K18 filaments. β-Cell K8 is required for islet and β-cell structural integrity, normal mitochondrial morphology, and GLUT2 plasma membrane targeting, and has implications on STZ sensitivity as well as systemic insulin responses.
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This work was supported by the Novo Nordisk Foundation–NNF17OC002725/NNF20OC0063889, the Finnish Diabetes Research Foundation, the Sigrid Juselius Foundation, and Diabetes Wellness (to D.M.T.). This research also was supported by the Research Council of Finland’s Flagship InFLAMES (337530 and 357910) and the EuroCellNet COST Action (CA15214), Swedish Cultural Foundation, Finnish Cultural Foundation, Jalmari and Rauha Ahokas Foundation, Paulo Foundation, Oskar Öflund Foundation, Waldemar von Frenckell Foundation, and Victoriastiftelsen.