Loureirin B promotes insulin secretion through inhibition of K ATP channel and influx of intracellular calcium

2017 ◽  
Vol 119 (2) ◽  
pp. 2012-2021 ◽  
Author(s):  
Yijie Sha ◽  
Yuelin Zhang ◽  
Jing Cao ◽  
Kai Qian ◽  
Bing Niu ◽  
...  
Cell Calcium ◽  
1999 ◽  
Vol 25 (1) ◽  
pp. 59-68 ◽  
Author(s):  
D. Mears ◽  
X. Leighton ◽  
I. Atwater ◽  
E. Rojas

2021 ◽  
Author(s):  
Bryan J. González ◽  
Haoquan Zhao ◽  
Jacqueline Niu ◽  
Damian J. Williams ◽  
Jaeyop Lee ◽  
...  

AbstractMutations in HNF1A cause Maturity Onset Diabetes of the Young type 3 (MODY3), the most prevalent form of monogenic diabetes. We generated stem cell-derived pancreatic endocrine cells from human embryonic stem cells (hESCs) with induced hypomorphic mutations in HNF1A. Using these cells, we show that HNF1A orchestrates a transcriptional program required for distinct aspects of β-cell fate and function. During islet cell differentiation, HNF1A deficiency biases islet endocrine cells towards an α-cell fate associated with PAX4 down-regulation. HNF1A- deficient β-cells display impaired basal and glucose stimulated-insulin secretion in association with a reduction in CACNA1A and intracellular calcium levels, and impaired insulin granule exocytosis in association with SYT13 down-regulation. Knockout of PAX4, CACNA1A and SYT13 reproduce the relevant phenotypes. Reduction of insulin secretion is associated with accumulation of enlarged secretory granules, and altered stoichiometry of secreted insulin to C-peptide. In HNF1A deficient β-cells, glibenclamide, a sulfonylurea drug used in the treatment of MODY3 patients, increases intracellular calcium to levels beyond those achieved by glucose, and restores C-peptide and insulin secretion to a normal stoichiometric ratio. To study HNF1A deficiency in the context of a human disease model, we also generated stem cell-derived pancreatic endocrine cells from two MODY3 patient’s induced pluripotent stem cells (iPSCs). While insulin secretion defects are constitutive in cells with complete HNF1A loss of function, β-cells heterozygous for hypomorphic HNF1A mutations are initially normal, but lose the ability to secrete insulin and acquire abnormal stoichiometric secretion ratios. Importantly, the defects observed in these stem cell models are also seen in circulating proportions of insulin:C-peptide in nine MODY3 patients.One sentence of summaryDeficiency of the transcription factor HNF1A biases islet endocrine cell fate towards α-cells, impairs intracellular calcium homeostasis and insulin exocytosis, alters the stoichiometry of insulin to C-peptide release, and leads to an accumulation of abnormal insulin secretory granules in β-cells.


Author(s):  
Yanting Ding ◽  
Sijing Xia ◽  
Han Zhang ◽  
Qin Chen ◽  
Bing Niu

Diabetes ◽  
1981 ◽  
Vol 30 (5) ◽  
pp. 446-450 ◽  
Author(s):  
S. Kawazu ◽  
M. Ikeuchi ◽  
M. Kikuchi ◽  
Y. Kanazawa ◽  
W. Y. Fujimoto ◽  
...  

Nutrients ◽  
2020 ◽  
Vol 12 (4) ◽  
pp. 1173 ◽  
Author(s):  
Anna Drzazga ◽  
Marta Okulus ◽  
Magdalena Rychlicka ◽  
Łukasz Biegała ◽  
Anna Gliszczyńska ◽  
...  

Diabetes mellitus is a worldwide health problem with high rates of mortality and morbidity. Management of diabetes mellitus by dietary components is achievable especially at the initial stage of the disease. Several studies confirmed the antidiabetic activities of simple phenolic acids and lysophosphatidylcholine (LPC). The main goal of this study was to identify new potential insulin secretion modulators obtained by combining the structures of two natural compounds, namely O-methyl derivatives of phenolic acids and phospholipids. LPC and phosphatidylcholine bearing methoxylated aromatic carboxylic acids were tested as potential agents able to improve glucose-stimulated insulin secretion (GSIS) and intracellular calcium mobilization in MIN6 β pancreatic cell line. Our results show that LPC with covalently bonded molecule of p-anisic acid at the sn-1 position was able to induce GSIS and intracellular calcium flux. Notably, 1-anisoyl-2-hydroxy-sn-glycero-3-phosphocholine did not affect the viability of MIN6 cells, suggesting its potential safe use. Furthermore, we have shown that three G protein coupled receptors, namely GPR40, GPR55, and GPR119, are targeted by this LPC derivative.


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