Literature DB >> 30471114

Challenges and advances in atomistic simulations of potassium and sodium ion channel gating and permeation.

Kevin R DeMarco1,2, Slava Bekker1,3, Igor Vorobyov1,2.   

Abstract

Ion channels are implicated in many essential physiological events such as electrical signal propagation and cellular communication. The advent of K+ and Na+ ion channel structure determination has facilitated numerous investigations of molecular determinants of their behaviour. At the same time, rapid development of computer hardware and molecular simulation methodologies has made computational studies of large biological molecules in all-atom representation tractable. The concurrent evolution of experimental structural biology with biomolecular computer modelling has yielded mechanistic details of fundamental processes unavailable through experiments alone, such as ion conduction and ion channel gating. This review is a short survey of the atomistic computational investigations of K+ and Na+ ion channels, focusing on KcsA and several voltage-gated channels from the KV and NaV families, which have garnered many successes and engendered several long-standing controversies regarding the nature of their structure-function relationship. We review the latest advancements and challenges facing the field of molecular modelling and simulation regarding the structural and energetic determinants of ion channel function and their agreement with experimental observations.
© 2018 The Authors. The Journal of Physiology © 2018 The Physiological Society.

Keywords:  KcsA; inactivation; knock-on mechanism; membrane protein; molecular dynamics; sliding helix; voltage gated ion channel; voltage sensor

Year:  2018        PMID: 30471114      PMCID: PMC6355641          DOI: 10.1113/JP277088

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  163 in total

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3.  Definition and testing of the GROMOS force-field versions 54A7 and 54B7.

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Journal:  Eur Biophys J       Date:  2011-04-30       Impact factor: 1.733

4.  Ion permeation in K⁺ channels occurs by direct Coulomb knock-on.

Authors:  David A Köpfer; Chen Song; Tim Gruene; George M Sheldrick; Ulrich Zachariae; Bert L de Groot
Journal:  Science       Date:  2014-10-17       Impact factor: 47.728

5.  Targeted molecular dynamics: a new approach for searching pathways of conformational transitions.

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Journal:  J Mol Graph       Date:  1994-06

6.  C-type inactivation of voltage-gated K+ channels: pore constriction or dilation?

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Review 8.  Force Field Development for Lipid Membrane Simulations.

Authors:  Alexander P Lyubartsev; Alexander L Rabinovich
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Review 9.  Identifying and Visualizing Macromolecular Flexibility in Structural Biology.

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10.  Single-particle cryo-EM structure of a voltage-activated potassium channel in lipid nanodiscs.

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Journal:  Elife       Date:  2018-08-15       Impact factor: 8.140

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5.  Conductance selectivity of Na+ across the K+ channel via Na+ trapped in a tortuous trajectory.

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6.  Opening of glutamate receptor channel to subconductance levels.

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7.  Unraveling of a Strongly Correlated Dynamical Network of Residues Controlling the Permeation of Potassium in KcsA Ion Channel.

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8.  Interactions of Sea Anemone Toxins with Insect Sodium Channel-Insights from Electrophysiology and Molecular Docking Studies.

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9.  Molecular Insights Into Binding and Activation of the Human KCNQ2 Channel by Retigabine.

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Review 10.  Long QT Syndrome Type 2: Emerging Strategies for Correcting Class 2 KCNH2 (hERG) Mutations and Identifying New Patients.

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