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Computational model of the cAMP-mediated sensory response and calcium-dependent adaptation in vertebrate olfactory receptor neurons

机译:脊椎动物嗅觉受体神经元中cAMP介导的感觉反应和钙依赖性适应的计算模型

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摘要

We develop a mechanistic mathematical model of the G-protein coupled signaling pathway responsible for generating current responses in frog olfactory receptor neurons. The model incorporates descriptions of ligand-receptor interaction, intracellular transduction events involving the second messenger cAMP, effector ion-channel activity, and calcium-mediated feedback steps. We parameterized the model with respect to suction pipette current recordings from single cells stimulated with multiple odor concentrations. The proposed model accurately predicts the receptor-current response of the neuron to brief and prolonged odorant exposure and is able to produce the adaptation observed under repeated or sustained stimulation.
机译:我们开发了负责在青蛙嗅觉受体神经元中产生电流响应的G蛋白偶联信号通路的力学数学模型。该模型结合了配体-受体相互作用,涉及第二信使cAMP的细胞内转导事件,效应子离子通道活性以及钙介导的反馈步骤的描述。我们参数化了模型,该模型是关于由多个气味浓度刺激的单个细胞的吸液管电流记录的。所提出的模型准确地预测了神经元对短暂和延长的气味暴露的受体电流响应,并且能够产生在反复或持续刺激下观察到的适应性。

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