2001Unpublished venueRequires access

Ion Channels and Signal Transduction

Gerhard Krauss

Open publisher page 2 citations

Abstract

Principles of neuronal communication Membrane potential and electrical communication Structure and function of voltage-gated ion channels Principles of regulation of ion channels Characteristics of voltage-gated ion channels Structure of voltage-gated ion channels Structural basis of ion channel function Voltage-dependent activation Ion passage and pore walls Inactivation of voltage-gated ion channels Ligand-gated ion channels Neurotransmitters and mechanisms of ligand-gated opening of ion channels Neurotransmitter-controlled receptors with intrinsic ion channel function

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Principles of neuronal communication Membrane potential and electrical communication Structure and function of voltage-gated ion channels Principles of regulation of ion channels Characteristics of voltage-gated ion channels Structure of voltage-gated ion channels Structural basis of ion channel function Voltage-dependent activation Ion passage and pore walls Inactivation of voltage-gated ion channels Ligand-gated ion channels Neurotransmitters and mechanisms of ligand-gated opening of ion channels Neurotransmitter-controlled receptors with intrinsic ion channel function

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Available abstract

Principles of neuronal communication Membrane potential and electrical communication Structure and function of voltage-gated ion channels Principles of regulation of ion channels Characteristics of voltage-gated ion channels Structure of voltage-gated ion channels Structural basis of ion channel function Voltage-dependent activation Ion passage and pore walls Inactivation of voltage-gated ion channels Ligand-gated ion channels Neurotransmitters and mechanisms of ligand-gated opening of ion channels Neurotransmitter-controlled receptors with intrinsic ion channel function

Key concepts: Ion channel, Light-gated ion channel, Ligand-gated ion channel, Voltage-gated ion channel, Ion, Biophysics, Chemistry, Membrane potential

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