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Modelling van der Waals interaction between water molecules and biological channels

journal contribution
posted on 2024-11-16, 08:28 authored by Hakim Abdul Al Garalleh, Ngamta Thamwattana, Barry Cox, James HillJames Hill
We examine the van der Waals interactions between water molecules with both water channels, aquaporin-Z and glycerol channel GlpF. Here we model these problems using classical applied mathematics and obtain the potential energy for a water molecule interacting with the channels which we assume in both cases to have a flaired right cylindrical geometry. We propose a continuous model where all the atoms comprising the channels are assumed to be uniformly distributed within their volume. We model a water molecule as comprising two parts: firstly as a single point representing the location of the oxygen atom, and a spherical shell over which we assume a uniform distribution of the two hydrogen atoms. Our results indicate the spontaneous acceptance of water molecules into these channels.

Funding

Modelling applications of nanomaterials in biology and medicine

Australian Research Council

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History

Citation

Al Garalleh, H., Thamwattana, N., Cox, B. J. & Hill, J. M. (2013). Modelling van der Waals interaction between water molecules and biological channels. Journal of Computational and Theoretical Nanoscience, 10 (11), 2722-2731.

Journal title

Journal of Computational and Theoretical Nanoscience

Volume

10

Issue

11

Pagination

2722-2731

Language

English

RIS ID

85293

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