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Swing motion as a diffusion mechanism of lipid bilayers in a gel phase
- Oh, Younghoon;
- Kim, Jeongmin;
- Yethiraj, Arun;
- Sung, Bong June
WEB OF SCIENCE
18SCOPUS
19초록
Lipid bilayers are a model system for studying the properties of cell membranes. For lipid bilayers of a single lipid component, there is a phase transition from a fluid phase to a gel phase as the temperature is decreased. The dynamic behavior of lipids in the gel phase is interesting: some models show dynamic heterogeneity with a large disparity in timescales between fast and slow molecules, and a spatial segregation of the slow molecules. In this paper we study the dynamics of coarse-grained models of lipid bilayers using the dry Martini, Lennard-Jones Martini, polarizable Martini, and BMW models. All four models show similar dynamical behaviors in the gel phase although the transition temperature is model-dependent. We find that the primary mode of transport in the gel phase is a hopping of the lipid molecules. Hopping is seen in both the translational and rotational dynamics, which are correlated, i.e., the lipid molecules display a swing-like motion in the gel phase.
키워드
- 제목
- Swing motion as a diffusion mechanism of lipid bilayers in a gel phase
- 저자
- Oh, Younghoon; Kim, Jeongmin; Yethiraj, Arun; Sung, Bong June
- 발행일
- 2016-01-19
- 유형
- Article
- 권
- 93
- 호
- 1