High-resolution 2D NMR spectroscopy of bicelles to measure the membrane interaction of ligands

被引:58
作者
Dvinskikh, Sergey V.
Durr, Ulrich H. N.
Yamamoto, Kazutoshi
Ramamoorthy, Ayyalusamy [1 ]
机构
[1] Univ Michigan, Div Biophys Res, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Dept Chem, Ann Arbor, MI 48109 USA
关键词
D O I
10.1021/ja065536k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Magnetically aligned bicelles are increasingly being used as model membranes in solution- and solid-state NMR studies of the structure, dynamics, topology, and interaction of membrane-associated peptides and proteins. These studies commonly utilize the PISEMA pulse sequence to measure dipolar coupling and chemical shift, the two key parameters used in subsequent structural analysis. In the present study, we demonstrate that the PISEMA and other rotating-frame pulse sequences are not suitable for the measurement of long-range heteronuclear dipolar couplings, and that they provide inaccurate values when multiple protons are coupled to a C-13 nucleus. Furthermore, we demonstrate that a laboratory-frame separated-local-field experiment is capable of overcoming these difficulties in magnetically aligned bicelles. An extension of this approach to accurately measure C-13-P-31 and H-1-P-31 couplings from phospholipids, which are useful to understand the interaction of molecules with the membrane, is also described. In these 2D experiments, natural abundance C-13 was observed from bicelles containing DMPC and DHPC lipid molecules. As a first application, these solid-state NMR approaches were utilized to probe the membrane interaction of an antidepressant molecule, desipramine, and its location in the membrane.
引用
收藏
页码:794 / 802
页数:9
相关论文
共 76 条
[1]   Determination of membrane protein structure and dynamics by magic-angle-spinning solid-state NMR spectroscopy [J].
Andronesi, OC ;
Becker, S ;
Seidel, K ;
Heise, H ;
Young, HS ;
Baldus, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (37) :12965-12974
[2]   Biophysical approaches to membrane protein structure determination [J].
Arora, A ;
Tamm, LK .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2001, 11 (05) :540-547
[3]   SIMPSON: A general simulation program for solid-state NMR spectroscopy [J].
Bak, M ;
Rasmussen, JT ;
Nielsen, NC .
JOURNAL OF MAGNETIC RESONANCE, 2000, 147 (02) :296-330
[4]  
BALDUS M, 2006, NMR SPECTROSCOPY BIO, P39
[5]  
Bielecki A, 1990, ADV MAGN OPT RESON, V14, P111, DOI [DOI 10.1016/B978-0-12-025514-6.50011-3, 10.1016/b978-0-12-025514-6.50011-3]
[6]   LOW-POWER MULTIPULSE LINE NARROWING IN SOLID-STATE NMR [J].
BURUM, DP ;
LINDER, M ;
ERNST, RR .
JOURNAL OF MAGNETIC RESONANCE, 1981, 44 (01) :173-188
[7]   HETERONUCLEAR CORRELATION SPECTROSCOPY IN ROTATING SOLIDS [J].
CARAVATTI, P ;
BRAUNSCHWEILER, L ;
ERNST, RR .
CHEMICAL PHYSICS LETTERS, 1983, 100 (04) :305-310
[8]   Magnetically aligned phospholipid bilayers with large q ratios stabilize magnetic alignment with high order in the gel and Lα phases [J].
Cardon, TB ;
Dave, PC ;
Lorigan, GA .
LANGMUIR, 2005, 21 (10) :4291-4298
[9]   Increasing the accuracy of solution NMR structures of membrane proteins by application of residual dipolar couplings. High-resolution structure of outer membrane protein A [J].
Cierpicki, Tomasz ;
Liang, Binyong ;
Tamm, Lukas K. ;
Bushweller, John H. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (21) :6947-6951
[10]   Location of Trp265 in metarhodopsin II: Implications for the activation mechanism of the visual receptor rhodopsin [J].
Crocker, E ;
Eilers, M ;
Ahuja, S ;
Hornak, V ;
Hirshfeld, A ;
Sheves, M ;
Smith, SO .
JOURNAL OF MOLECULAR BIOLOGY, 2006, 357 (01) :163-172