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  • Underlying mechanisms of glucocorticoid-induced β-cell death and dysfunction: a new role for glycogen synthase kinase 3.

Underlying mechanisms of glucocorticoid-induced β-cell death and dysfunction: a new role for glycogen synthase kinase 3.

Cell death & disease (2021-12-09)
Etienne Delangre, Junjun Liu, Stefania Tolu, Kamel Maouche, Mathieu Armanet, Pierre Cattan, Gaëlle Pommier, Danielle Bailbé, Jamileh Movassat
要旨

Glucocorticoids (GCs) are widely prescribed for their anti-inflammatory and immunosuppressive properties as a treatment for a variety of diseases. The use of GCs is associated with important side effects, including diabetogenic effects. However, the underlying mechanisms of GC-mediated diabetogenic effects in β-cells are not well understood. In this study we investigated the role of glycogen synthase kinase 3 (GSK3) in the mediation of β-cell death and dysfunction induced by GCs. Using genetic and pharmacological approaches we showed that GSK3 is involved in GC-induced β-cell death and impaired insulin secretion. Further, we unraveled the underlying mechanisms of GC-GSK3 crosstalk. We showed that GSK3 is marginally implicated in the nuclear localization of GC receptor (GR) upon ligand binding. Furthermore, we showed that GSK3 regulates the expression of GR at mRNA and protein levels. Finally, we dissected the proper contribution of each GSK3 isoform and showed that GSK3β isoform is sufficient to mediate the pro-apoptotic effects of GCs in β-cells. Collectively, in this work we identified GSK3 as a viable target to mitigate GC deleterious effects in pancreatic β-cells.

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Roche
リベラーゼTL研究用グレード, lyophilized, suitable for tissue processing, optimum pH 7.4
Sigma-Aldrich
HEPES 溶液, 1 M, pH 7.0-7.6, sterile-filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
ホスファターゼインヒビターカクテル2, aqueous solution (dark coloration may develop upon storage, which does not affect the activity)
Sigma-Aldrich
スペルミジン, ≥99% (GC)
Roche
ウシ血清アルブミン フラクションV、脂肪酸フリー, 98.5% (electrophoresis), Fatty acids (total) ≤0.2 mg/g, Triglycerides (enzym.) free, Immunoglobulins not detectable, microbiological culture: suitable, USA origin
Sigma-Aldrich
ApopTag PlusペルオキシダーゼIn Situアポトーシスキット, The ApopTag Plus Peroxidase In Situ Apoptosis Detection Kit detects apoptotic cells by labeling & detecting DNA strand breaks by the indirect TUNEL method.
Sigma-Aldrich
SB 216763, >98% (HPLC)