4.3 Article

Implementation of a self-consistent slab model of bilayer structure in the SasView suite

期刊

JOURNAL OF APPLIED CRYSTALLOGRAPHY
卷 54, 期 -, 页码 363-370

出版社

INT UNION CRYSTALLOGRAPHY
DOI: 10.1107/S1600576720015526

关键词

lamellar phases; small-angle neutron scattering; SANS; small-angle X-ray scattering; SAXS; area per lipid; hydration number; lipids; membranes; block copolymers; liquid crystals

资金

  1. Genomic Sciences Program, Office of Biological and Environmental Research, US Department of Energy (DOE) [FWP ERKP752]
  2. NSF [DMR0520547]
  3. EU Horizon 2020 programme under the SINE2020 project [654000]
  4. National Institute of Standards and Technology [DMR-2010792]
  5. National Science Foundation [DMR-2010792]

向作者/读者索取更多资源

Slab models are commonly used to describe lyotropic lamellar phases such as lipid bilayers, breaking the structure into a central core and two outer layers. This model, implemented in the SasView software suite, provides physical consistency for data treatment with only two free parameters. It is demonstrated to be useful for fitting lipid bilayer data sets in neutron scattering analysis.
Slab models are simple and useful structural descriptions which have long been used to describe lyotropic lamellar phases, such as lipid bilayers. Typically, slab models assume a midline symmetry and break a bilayer structure into three pieces, a central solvent-free core and two symmetric outer layers composed of the soluble portion of the amphiphile and associated solvent. This breakdown matches reasonably well to the distribution of neutron scattering length density and therefore is a convenient and common approach for the treatment of small-angle scattering data. Here, an implementation of this model within the SasView software suite is reported. The implementation is intended to provide physical consistency through the area per amphiphile molecule and number of solvent molecules included within the solvent-exposed outer layer. The proper use of this model requires knowledge of (or good estimates for) the amphiphile and solvent molecule volume and atomic composition, ultimately providing a self-consistent data treatment with only two free parameters: the lateral area per amphiphile molecule and the number of solvent molecules included in the outer region per amphiphile molecule. The use of this code is demonstrated in the fitting of standard lipid bilayer data sets, obtaining structural parameters consistent with prior literature and illustrating the typical and ideal cases of fitting for neutron scattering data obtained using single or multiple contrast conditions. While demonstrated here for lipid bilayers, this model is intended for general application to block copolymers, surfactants, and other lyotropic lamellar phase structures for which a slab model is able to reasonably estimate the neutron scattering length density/electron-density profile of inner and outer layers of the lamellae.

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