» Articles » PMID: 17362089

Free Energy Simulations of Single and Double Ion Occupancy in Gramicidin A

Overview
Journal J Chem Phys
Specialties Biophysics
Chemistry
Date 2007 Mar 17
PMID 17362089
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

Simultaneous occupancy of the two binding sites in gramicidin A by monovalent cations is a well known property of this channel, but the energetic feasibility of this process in molecular dynamics simulations has not been established so far. Here the authors study the energetics of single and double ion occupancy in gramicidin A by constructing the potential of mean force for single and pair of cations. As representatives of small and large ions, they consider both Na+ and K+ ions in the calculations. Binding constants of ions are estimated from the free energy profiles. Comparisons with the experimental results indicate 3-4 kT discrepancy in the binding energies. They also study the coordination of the ions in their respective binding sites and the dynamic behavior of the channel water during the double ion binding process.

Citing Articles

Free-Energy Simulations Resolve the Low-Affinity Na-High-Affinity Asp Binding Paradox in Glt.

Setiadi J, Kuyucak S Biophys J. 2019; 117(4):780-789.

PMID: 31383357 PMC: 6712548. DOI: 10.1016/j.bpj.2019.07.016.


K binding and proton redistribution in the EP state of the H, K-ATPase.

Dubey V, Han M, Kopec W, Solovyov I, Abe K, Khandelia H Sci Rep. 2018; 8(1):12732.

PMID: 30143663 PMC: 6109069. DOI: 10.1038/s41598-018-30885-w.


Molecular dynamics simulations of membrane proteins.

Bastug T, Kuyucak S Biophys Rev. 2017; 4(3):271-282.

PMID: 28510077 PMC: 5418402. DOI: 10.1007/s12551-012-0084-9.


Use of Molecular Dynamics for the Refinement of an Electrostatic Model for the In Silico Design of a Polymer Antidote for the Anticoagulant Fondaparinux.

Cajiao A, Kwok E, Gopaluni B, Kizhakkedathu J J Med Eng. 2016; 2013:487387.

PMID: 27006916 PMC: 4782625. DOI: 10.1155/2013/487387.


Computational Investigation of the Effect of Lipid Membranes on Ion Permeation in Gramicidin A.

Setiadi J, Kuyucak S Membranes (Basel). 2016; 6(1).

PMID: 26999229 PMC: 4812426. DOI: 10.3390/membranes6010020.