Montefusco Francesco, Pedersen Morten Gram
Department of Information Engineering, University of Padova, Via Gradenigo 6/B, 35131, Padova, Italy.
J Physiol. 2015 Oct 15;593(20):4519-30. doi: 10.1113/JP270777. Epub 2015 Sep 2.
Glucagon secretion from pancreatic alpha-cells is dysregulated in diabetes. Despite decades of investigations of the control of glucagon release by glucose and hormones, the underlying mechanisms are still debated. Recently, mathematical models have been applied to investigate the modification of electrical activity in alpha-cells as a result of glucose application. However, recent studies have shown that paracrine effects such as inhibition of glucagon secretion by glucagon-like peptide 1 (GLP-1) or stimulation of release by adrenaline involve cAMP-mediated effects downstream of electrical activity. In particular, depending of the intracellular cAMP concentration, specific types of Ca(2+) channels are inhibited or activated, which interacts with mobilization of secretory granules. To investigate these aspects of alpha-cell function theoretically, we carefully developed a mathematical model of Ca(2+) levels near open or closed Ca(2+) channels of various types, which was linked to a description of Ca(2+) below the plasma membrane, in the bulk cytosol and in the endoplasmic reticulum. We investigated how the various subcellular Ca(2+) compartments contribute to control of glucagon-exocytosis in response to glucose, GLP-1 or adrenaline. Our studies refine previous modelling studies of alpha-cell function, and provide deeper insight into the control of glucagon secretion.
糖尿病患者胰腺α细胞的胰高血糖素分泌失调。尽管数十年来一直在研究葡萄糖和激素对胰高血糖素释放的控制,但潜在机制仍存在争议。最近,数学模型已被用于研究葡萄糖作用下α细胞电活动的改变。然而,最近的研究表明,旁分泌效应,如胰高血糖素样肽1(GLP-1)对胰高血糖素分泌的抑制或肾上腺素对释放的刺激,涉及电活动下游的cAMP介导的效应。特别是,根据细胞内cAMP浓度,特定类型的Ca(2+)通道会被抑制或激活,这与分泌颗粒的动员相互作用。为了从理论上研究α细胞功能的这些方面,我们精心建立了一个数学模型,描述了不同类型开放或关闭的Ca(2+)通道附近的Ca(2+)水平,并将其与质膜下方、细胞质溶胶和内质网中Ca(2+)的描述联系起来。我们研究了各种亚细胞Ca(2+)区室如何响应葡萄糖、GLP-1或肾上腺素来控制胰高血糖素的胞吐作用。我们的研究完善了先前关于α细胞功能的建模研究,并为胰高血糖素分泌的控制提供了更深入的见解。