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

Dougherty DP, Wright GA, Yew AC

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.

Keywords:

Olfactory Receptor Neurons

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Animals

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Vertebrates

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Calcium

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GTP-Binding Proteins

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Ion Channels

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Cyclic AMP

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Smell

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Adaptation, Physiological

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Signal Transduction

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Models, Biological