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2D-ELDOR using full Sc- fitting and absorption lineshapes
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2D-ELDOR using full Sc- fitting and absorption lineshapes

Yun-Wei Chiang, Antonio Costa-FilhoJack H. Freed
Journal of Magnetic Resonance, 卷.188(2), 頁碼.231-245
10/2007
PMID: 17681478

摘要

2D-ELDOR Absorption spectrum ESR Full Sc- fitting Plasma membrane vesicles Spectral lineshape Molecular Biology Physical and Theoretical Chemistry Spectroscopy Radiology Nuclear Medicine and Imaging Condensed Matter Physics
Recent progress in developing 2D-ELDOR (2D electron-electron double resonance) techniques to better capture molecular dynamics in complex fluids, particularly in model and biological membranes, is reported. The new "full S c- method", which corrects the spectral analysis for the phase distortion effects present in the experiments, is demonstrated to enhance the sensitivity of 2D-ELDOR in reporting on molecular dynamics in complex membrane environments. That is, instead of performing spectral fitting in the magnitude mode, our new method enables simultaneous fitting of both the real and imaginary components of the S c- signal. The full S c- fitting not only corrects the phase distortions in the experimental data but also more accurately determines instrumental dead times. The phase corrections applied to the S c- spectrum enable the extraction of the pure absorption-mode spectrum, which is characterized by much better resolution than the magnitude-mode spectrum. In the absorption mode, the variation of homogeneous broadening, which reports on the dynamics of the spin probe, can even be observed by visual inspection. This new method is illustrated with results from model membranes of dipalmitoyl-sn-glycero-phosphatidylcholine (DPPC)-cholesterol binary mixtures, as well as with results from plasma membrane vesicles of mast cells. In addition to the dynamic parameters, which provide quantitative descriptions for membranes at the molecular level, the high-resolution absorption spectra themselves may be used as a "fingerprint" to characterize membrane phases and distinguish coexisting components in biomembranes. Thus we find that 2D-ELDOR is greatly improved with the new "full S c- method" especially for exploring the complexity of model and biological membranes. © 2007.

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