Pharmacological inhibition of thioredoxin reductase increases insulin secretion and diminishes beta cell viability

被引:0
作者
Dennis Brüning
Kathrin Hatlapatka
Verena Lier-Glaubitz
Vincent Andermark
Stephan Scherneck
Ingo Ott
Ingo Rustenbeck
机构
[1] Technische Universität Braunschweig,Institute of Pharmacology, Toxicology and Clinical Pharmacy
[2] Technische Universität Braunschweig,Institute of Medicinal and Pharmaceutical Chemistry
来源
Naunyn-Schmiedeberg's Archives of Pharmacology | 2021年 / 394卷
关键词
Insulin secretion; Cytosolic calcium concentration; Glucose; Thioredoxin; NADPH;
D O I
暂无
中图分类号
学科分类号
摘要
Apparently, both a decrease in beta cell function and in beta cell mass contribute to the progressive worsening of type 2 diabetes. So, it is of particular interest to define factors which are relevant for the regulation of insulin secretion and at the same time for the maintenance of beta cell mass. The NADPH-thioredoxin system has a candidate role for such a dual function. Here, we have characterized the effects of a highly specific inhibitor of thioredoxin reductase, AM12, on the viability and function of insulin-secreting MIN6 cells and isolated NMRI mouse islets. Viability was checked by MTT testing and the fluorescent live-dead assay. Apoptosis was assessed by annexin V assay. Insulin secretion of perifused islets was measured by ELISA. The cytosolic Ca2+ concentration was measured by the Fura technique. Acute exposure of perifused pancreatic islets to 5 μM AM12 was without significant effect on insulin secretion. Islets cultured for 24 h in 0.5 or 5 μM AM12 showed unchanged basal secretion during perifusion, but the response to 30 mM glucose was significantly enhanced by 5 μM. Twenty-four-hour exposure to 5 μM AM12 proved to be without effect on the viability of MIN6 cells, whereas longer exposure was clearly toxic. Islets were more susceptible, showing initial signs of apoptosis after 24-h exposure to 5 μM AM12. The activity of the NADPH-thioredoxin system is indispensable for beta cell viability but may have a limiting effect on glucose-induced insulin secretion.
引用
收藏
页码:1133 / 1142
页数:9
相关论文
共 165 条
[1]  
Andermark V(2016)Alkynyl gold(I) phosphane complexes: evaluation of structure–activity-relationships for the phosphane ligands, effects on key signaling proteins and preliminary in-vivo studies with a nanoformulated complex J Inorg Biochem 160 140-148
[2]  
Göke K(2015)How do reducing equivalents increase insulin secretion? J Clin Invest 125 3754-3756
[3]  
Kokoschka M(1993)Characterization of the cellular reduction of 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT): subcellular localization, substrate dependence, and involvement of mitochondrial electron transport in MTT reduction Arch Biochem Biophys 303 474-482
[4]  
Abu El Maaty MA(1996)CD95 (Fas/Apo-1)-induced apoptosis results in loss of glucose transporter function J Immunol 156 4092-4099
[5]  
Lum CT(2008)Thioredoxin-interacting protein: a critical link between glucose toxicity and beta-cell apoptosis Diabetes 57 938-944
[6]  
Zou T(2019)Protein SUMOylation regulates insulin secretion at multiple stages Sci Rep 9 2895-275
[7]  
Sun RWY(2004)Plasma membrane alterations during apoptosis: role in corpse clearance Antioxid Redox Signal 6 269-1287
[8]  
Aguilo E(2014)New insights into the role of connexins in pancreatic islet function and diabetes FEBS Lett 588 1278-3860
[9]  
Oehninger L(2015)Isocitrate-to-SENP1 signaling amplifies insulin secretion and rescues dysfunctional β cells J Clin Invest 125 3847-1760
[10]  
Rodriguez L(2000)Triggering and amplifying pathways of regulation of insulin secretion by glucose Diabetes 49 1751-124