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Structural basis of fast N-type inactivation in Kv channels

Nature. 2025-08; 
Xiao-Feng Tan, Ana I Fernández-Mariño, Yan Li, Tsg-Hui Chang, Kenton J Swartz Molecular Physiology and Biophysics Section, Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA. [email protected].
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Abstract

Action potentials are generated by opening of voltage-activated sodium (Nav) and potassium (Kv) channels1, which can rapidly inactivate to shape the nerve impulse and contribute to synaptic facilitation and short-term memory1-4. The mechanism of fast inactivation was proposed to involve an intracellular domain that blocks the internal pore in both Nav5,6 and Kv7-9 channels; however, recent studies in Nav10,11 and Kv12,13 channels support a mechanism in which the internal pore closes during inactivation. Here we investigate the mechanism of fast inactivation in the Shaker Kv channel using cryo-electron microscopy, mass spectrometry and electrophysiology. We resolved structures of a fully inactivated state in whi... More

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