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Identifying the Targets of the Amplifying Pathway for Insulin Secretion in Pancreatic β-Cells by Kinetic Modeling of Granule Exocytosis

机译:通过颗粒胞吐动力学模型确定胰腺β细胞中胰岛素分泌的放大途径的目标。

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摘要

A kinetic model for insulin secretion in pancreatic β-cells is adapted from a model for fast exocytosis in chromaffin cells. The fusion of primed granules with the plasma membrane is assumed to occur only in the “microdomain” near voltage-sensitive L-type Ca2+-channels, where [Ca2+] can reach micromolar levels. In contrast, resupply and priming of granules are assumed to depend on the cytosolic [Ca2+]. Adding a two-compartment model to handle the temporal distribution of Ca2+ between the microdomain and the cytosol, we obtain a unified model that can generate both the fast granule fusion and the slow insulin secretion found experimentally in response to a step of membrane potential. The model can simulate the potentiation induced in islets by preincubation with glucose and the reduction in second-phase insulin secretion induced by blocking R-type Ca2+-channels (CaV2.3). The model indicates that increased second-phase insulin secretion induced by the amplifying signal is controlled by the “resupply” step of the exocytosis cascade. In contrast, enhancement of priming is a good candidate for amplification of first-phase secretion by glucose, cyclic adenosine 3′:5′-cyclic monophosphate, and protein kinase C. Finally, insulin secretion is enhanced when the amplifying signal oscillates in phase with the triggering Ca2+-signal.
机译:从嗜铬细胞中快速胞吐的模型改编了胰腺β细胞中胰岛素分泌的动力学模型。假定引发的颗粒与质膜的融合仅发生在电压敏感的L型Ca 2 + 通道附近的“微区”中,其中[Ca 2 + ]可以达到微摩尔水平。相反,假定颗粒的补给和引发取决于胞质中的[Ca 2 + ]。添加一个两室模型来处理Ca 2 + 在微域和胞质溶胶之间的时间分布,我们获得了一个统一的模型,该模型可以同时产生快速的颗粒融合和缓慢的胰岛素分泌。对膜电位的反应。该模型可以模拟葡萄糖预孵育诱导的胰岛增强作用,以及通过阻断R型Ca 2 + 通道(CaV2.3)诱导的第二阶段胰岛素分泌减少。该模型表明,由放大信号诱导的第二阶段胰岛素分泌增加是由胞吐级联反应的“重新补充”步骤控制的。相反,增强引物是葡萄糖,环状腺苷3':5'-环状单磷酸酯酶和蛋白激酶C扩增第一相分泌的良好选择。最后,当扩增信号与触发Ca 2 + 信号。

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