Literature DB >> 26919429

Unfolding of a Temperature-Sensitive Domain Controls Voltage-Gated Channel Activation.

Cristina Arrigoni1, Ahmed Rohaim2, David Shaya1, Felix Findeisen1, Richard A Stein3, Shailika Reddy Nurva1, Smriti Mishra3, Hassane S Mchaourab3, Daniel L Minor4.   

Abstract

Voltage-gated ion channels (VGICs) are outfitted with diverse cytoplasmic domains that impact function. To examine how such elements may affect VGIC behavior, we addressed how the bacterial voltage-gated sodium channel (BacNa(V)) C-terminal cytoplasmic domain (CTD) affects function. Our studies show that the BacNa(V) CTD exerts a profound influence on gating through a temperature-dependent unfolding transition in a discrete cytoplasmic domain, the neck domain, proximal to the pore. Structural and functional studies establish that the BacNa(V) CTD comprises a bi-partite four-helix bundle that bears an unusual hydrophilic core whose integrity is central to the unfolding mechanism and that couples directly to the channel activation gate. Together, our findings define a general principle for how the widespread four-helix bundle cytoplasmic domain architecture can control VGIC responses, uncover a mechanism underlying the diverse BacNa(V) voltage dependencies, and demonstrate that a discrete domain can encode the temperature-dependent response of a channel.
Copyright © 2016 Elsevier Inc. All rights reserved.

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Year:  2016        PMID: 26919429      PMCID: PMC4769381          DOI: 10.1016/j.cell.2016.02.001

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


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