Article citationsMore>>
D. Massiot, F. Fayon, M. Capron, I. King, S. Lecalve, B. Alonso, J. O. Durand, , B. Bujoli, Z. Gan and G. Hoatson, “Modelling One-and Two-Dimensional Solid-State NMR Spectra,” Magnetic Resonance in Chemistry, Vol. 40, No. 1, 2002, pp. 70-76.
has been cited by the following article:
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TITLE:
Solid-State NMR Spectroscopic Approaches to Investigate Dynamics, Secondary Structure and Topology of Membrane Proteins
AUTHORS:
Shadi Abu-Baker, Gary A. Lorigan
KEYWORDS:
Solid-State NMR; Structure and Dynamics; Membrane Proteins
JOURNAL NAME:
Open Journal of Biophysics,
Vol.2 No.4,
November
1,
2012
ABSTRACT: Solid-state NMR spectroscopy is routinely used to determine the structural and dynamic properties of both membrane proteins and peptides in phospholipid bilayers [1-26]. From the perspective of the perpetuated lipids, 2H solid-state NMR spectroscopy can be used to probe the effect of embedded proteins on the order and dynamics of the acyl chains of phospholipid bilayers [8-13]. Moreover, 31P solid-state NMR spectroscopy can be used to investigate the interaction of peptides, proteins and drugs with phospholipid head groups [11-14]. The secondary structure of 13C = O site-specific isotopically labeled peptides or proteins inserted into lipid bilayers can be probed utilizing 13C CPMAS solid-state NMR spectroscopy [15-18]. Also, solid-state NMR spectroscopic studies can be utilized to ascertain pertinent informa- tion on the backbone and side-chain dynamics of 2H- and 15N-labeled proteins, respectively, in phospholipid bilayers [19-26]. Finally, specific 15N-labeled amide sites on a protein embedded inside oriented bilayers can be used to probe the alignment of the helices with respect to the bilayer normal [2]. A brief summary of all these solid-state NMR ap- proaches are provided in this minireview.