THE 3-DIMENSIONAL SOLUTION STRUCTURE OF RANTES

被引:109
作者
CHUNG, CW
COOKE, RM
PROUDFOOT, AEI
WELLS, TNC
机构
[1] GLAXO RES & DEV LTD,MED RES CTR,DEPT BIOMOLEC STRUCT,STEVENAGE SG1 2NY,HERTS,ENGLAND
[2] GLAXO INST MOLEC BIOL SA,CH-1228 PLAN LES OUATES,SWITZERLAND
关键词
D O I
10.1021/bi00029a005
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The solution structure of the chemokine RANTES (regulated on activation, normal T-cell expressed and secreted) has been determined using NMR spectroscopy. Backbone and side-chain H-1 and N-15 assignments have been obtained using a combination of two-dimensional homonuclear and three-dimensional heteronuclear spectra, Regular elements of secondary structure have been identified on the basis of a qualitative interpretation of NOE data, J(NH-H alpha) coupling constants, and amide exchange rates. Three-dimensional structures were calculated from a total of 2146 experimental restraints using a combination of distance geometry and simulated annealing protocols. For the 13 best structures the average backbone (N, C alpha, C) atomic rmsd from the mean coordinates for residues 5-65 is 0.64 Angstrom (+/-0.14 Angstrom) for the dimer and 0.50 Angstrom (+/-0.08 Angstrom) for the individual monomers. Each monomer consists of a three-stranded antiparallel P-sheet (residues 26-30, 38-43, 48-51) in a Greek key motif with a C-terminal helix (56-65) packed across the sheet, an arrangement similar to the monomeric structure of other members of this chemokine family (IL-8, PF4, MGSA/Gro alpha, and MIP-1 beta). Overall, the RANTES dimer resembles that previously reported for MIP-1 beta.
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页码:9307 / 9314
页数:8
相关论文
共 60 条
[1]  
ALAM R, 1993, J IMMUNOL, V150, P3443
[2]   CC-CHEMOKINES IN ALLERGIC INFLAMMATION [J].
BAGGIOLINI, M ;
DAHINDEN, CA .
IMMUNOLOGY TODAY, 1994, 15 (03) :127-133
[3]   CRYSTAL-STRUCTURE OF INTERLEUKIN-8 - SYMBIOSIS OF NMR AND CRYSTALLOGRAPHY [J].
BALDWIN, ET ;
WEBER, IT ;
STCHARLES, R ;
XUAN, JC ;
APPELLA, E ;
YAMADA, M ;
MATSUSHIMA, K ;
EDWARDS, BFP ;
CLORE, GM ;
GRONENBORN, AM ;
WLODAWER, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1991, 88 (02) :502-506
[4]   MLEV-17-BASED TWO-DIMENSIONAL HOMONUCLEAR MAGNETIZATION TRANSFER SPECTROSCOPY [J].
BAX, A ;
DAVIS, DG .
JOURNAL OF MAGNETIC RESONANCE, 1985, 65 (02) :355-360
[5]   SENSITIVITY-ENHANCED TWO-DIMENSIONAL HETERONUCLEAR SHIFT CORRELATION NMR-SPECTROSCOPY [J].
BAX, A ;
SUBRAMANIAN, S .
JOURNAL OF MAGNETIC RESONANCE, 1986, 67 (03) :565-569
[6]   PURE-PHASE 2D HOMONUCLEAR CROSS-POLARIZATION SPECTROSCOPY IN LIQUIDS [J].
BAZZO, R ;
CAMPBELL, ID .
JOURNAL OF MAGNETIC RESONANCE, 1988, 76 (02) :358-361
[7]  
BERNARD AR, 1995, IN PRESS CURRENT PRO
[8]   SELECTION OF COHERENCE-TRANSFER PATHWAYS IN NMR PULSE EXPERIMENTS [J].
BODENHAUSEN, G ;
KOGLER, H ;
ERNST, RR .
JOURNAL OF MAGNETIC RESONANCE, 1984, 58 (03) :370-388
[9]   MULTIPLE QUANTUM SPIN-ECHO SPECTROSCOPY [J].
BODENHAUSEN, G ;
VOLD, RL ;
VOLD, RR .
JOURNAL OF MAGNETIC RESONANCE, 1980, 37 (01) :93-106
[10]   COHERENCE TRANSFER BY ISOTROPIC MIXING - APPLICATION TO PROTON CORRELATION SPECTROSCOPY [J].
BRAUNSCHWEILER, L ;
ERNST, RR .
JOURNAL OF MAGNETIC RESONANCE, 1983, 53 (03) :521-528