首页> 外文期刊>Journal of Neurophysiology >Modeling interactions between electrical activity and second-messenger cascades in Aplysia neuron R15.
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Modeling interactions between electrical activity and second-messenger cascades in Aplysia neuron R15.

机译:在海ly神经元R15中模拟电活动和第二信使级联之间的相互作用。

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The biophysical properties of neuron R15 in Aplysia endow it with the ability to express multiple modes of oscillatory electrical activity, such as beating and bursting. Previous modeling studies examined the ways in which membrane conductances contribute to the electrical activity of R15 and the ways in which extrinsic modulatory inputs alter the membrane conductances by biochemical cascades and influence the electrical activity. The goals of the present study were to examine the ways in which electrical activity influences the biochemical cascades and what dynamical properties emerge from the ongoing interactions between electrical activity and these cascades. The model proposed by Butera et al. in 1995 was extended to include equations for the binding of Ca(2+) to calmodulin (CaM) and the actions of Ca(2+)/CaM on both adenylyl cyclase and phosphodiesterase. Simulations indicated that levels of cAMP oscillated during bursting and that these oscillations were approximately antiphasic to the oscillations of Ca(2+). In the presence of cAMP oscillations, brief perturbations could switch the electrical activity between bursting and beating (bistability). Compared with a constant-cAMP model, oscillations of cAMP substantially expanded the range of bistability. Moreover, the integrated electrical/biochemical model simulated some early experimental results such as activity-dependent inactivation of the anomalous rectifier. The results of the present study suggest that the endogenous activity of R15 depends, in part, on interactions between electrical activity and biochemical cascades.
机译:Aplysia中神经元R15的生物物理特性使其具有表达多种振荡电活动模式(例如跳动和爆发)的能力。以前的建模研究检查了膜电导对R15的电活动的贡献方式以及外在调节性输入通过生化级联改变膜电导并影响电活动的方式。本研究的目的是研究电活动影响生化级联的方式以及从电活动与这些级联之间正在进行的相互作用中产生的动力学性质。 Butera等人提出的模型。 1995年扩展到包括Ca(2+)结合钙调蛋白(CaM)的方程,以及Ca(2 +)/ CaM对腺苷酸环化酶和磷酸二酯酶的作用。模拟表明,cAMP的水平在猝发过程中振荡,并且这些振荡与Ca(2+)的振荡大致成反相位。在cAMP振荡的情况下,短暂的扰动可能会在爆发和跳动(双稳态)之间切换电活动。与恒定cAMP模型相比,cAMP的振荡大大扩展了双稳态的范围。此外,集成的电/生化模型模拟了一些早期实验结果,例如异常整流器的活动依赖性灭活。本研究的结果表明,R15的内源性活性部分取决于电活性和生化级联反应之间的相互作用。

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