Literature DB >> 29550514

Molecular order and T1-relaxation, cross-relaxation in nitroxide spin labels.

Derek Marsh1.   

Abstract

Interpretation of saturation-recovery EPR experiments on nitroxide spin labels whose angular rotation is restricted by the orienting potential of the environment (e.g., membranes) currently concentrates on the influence of rotational rates and not of molecular order. Here, I consider the dependence on molecular ordering of contributions to the rates of electron spin-lattice relaxation and cross relaxation from modulation of N-hyperfine and Zeeman anisotropies. These are determined by the averages 〈cos2θ〉 and 〈cos4θ〉, where θ is the angle between the nitroxide z-axis and the static magnetic field, which in turn depends on the angles that these two directions make with the director of uniaxial ordering. For saturation-recovery EPR at 9 GHz, the recovery rate constant is predicted to decrease with increasing order for the magnetic field oriented parallel to the director, and to increase slightly for the perpendicular field orientation. The latter situation corresponds to the usual experimental protocol and is consistent with the dependence on chain-labelling position in lipid bilayer membranes. An altered dependence on order parameter is predicted for saturation-recovery EPR at high field (94 GHz) that is not entirely consistent with observation. Comparisons with experiment are complicated by contributions from slow-motional components, and an unexplained background recovery rate that most probably is independent of order parameter. In general, this analysis supports the interpretation that recovery rates are determined principally by rotational diffusion rates, but experiments at other spectral positions/field orientations could increase the sensitivity to order parameter.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Correlation time; EPR; Order parameter; Orientation dependence; Rotational diffusion; Saturation recovery; Spin-lattice relaxation

Year:  2018        PMID: 29550514     DOI: 10.1016/j.jmr.2018.02.020

Source DB:  PubMed          Journal:  J Magn Reson        ISSN: 1090-7807            Impact factor:   2.229


  5 in total

1.  Characterization of the distribution of spin-lattice relaxation rates of lipid spin labels in fiber cell plasma membranes of eye lenses with a stretched-exponential function.

Authors:  Natalia Stein; Laxman Mainali; James S Hyde; Witold K Subczynski
Journal:  Appl Magn Reson       Date:  2019-03-07       Impact factor: 0.831

2.  Factors determining barrier properties to oxygen transport across model and cell plasma membranes based on EPR spin-label oximetry.

Authors:  Witold K Subczynski; Justyna Widomska; Natalia Stein; Harold M Swartz
Journal:  Appl Magn Reson       Date:  2021-08-18       Impact factor: 0.974

3.  Oxygen Transport Parameter in Plasma Membrane of Eye Lens Fiber Cells by Saturation Recovery EPR.

Authors:  N Stein; W K Subczynski
Journal:  Appl Magn Reson       Date:  2020-08-14       Impact factor: 0.831

4.  Differences in the properties of porcine cortical and nuclear fiber cell plasma membranes revealed by saturation recovery EPR spin labeling measurements.

Authors:  Natalia Stein; Witold K Subczynski
Journal:  Exp Eye Res       Date:  2021-03-12       Impact factor: 3.467

Review 5.  Multilamellar Liposomes as a Model for Biological Membranes: Saturation Recovery EPR Spin-Labeling Studies.

Authors:  Witold Karol Subczynski; Marija Raguz; Justyna Widomska
Journal:  Membranes (Basel)       Date:  2022-06-26
  5 in total

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