• Title of article

    Diffusion constant of K+ inside Gramicidin A: A comparative study of four computational methods Original Research Article

  • Author/Authors

    Artem B. Mamonov، نويسنده , , Maria G. Kurnikova، نويسنده , , Rob D. Coalson، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    11
  • From page
    268
  • To page
    278
  • Abstract
    The local diffusion constant of K+ inside the Gramicidin A (GA) channel has been calculated using four computational methods based on molecular dynamics (MD) simulations, specifically: Mean Square Displacement (MSD), Velocity Autocorrelation Function (VACF), Second Fluctuation Dissipation Theorem (SFDT) and analysis of the Generalized Langevin Equation for a Harmonic Oscillator (GLE-HO). All methods were first tested and compared for K+ in bulk water—all predicted the correct diffusion constant. Inside GA, MSD and VACF methods were found to be unreliable because they are biased by the systematic force exerted by the membrane-channel system on the ion. SFDT and GLE-HO techniques properly unbias the influence of the systematic force on the diffusion properties and predicted a similar diffusion constant of K+ inside GA, namely, ca. 10 times smaller than in the bulk. It was found that both SFDT and GLE-HO methods require extensive MD sampling on the order of tens of nanoseconds to predict a reliable diffusion constant of K+ inside GA.
  • Keywords
    Ionic diffusion coefficient , molecular dynamics simulation , Gramicidin A , Potassium
  • Journal title
    Biophysical Chemistry
  • Serial Year
    2006
  • Journal title
    Biophysical Chemistry
  • Record number

    1119755