Molecular mechanism of AMD3100 antagonism in the CXCR4 receptor - Transfer of binding site to the CXCR3 receptor

被引:205
作者
Rosenkilde, MM
Gerlach, LO
Jakobsen, JS
Skerlj, RT
Bridger, GJ
Schwartz, TW
机构
[1] Univ Copenhagen, Panum Inst, Dept Pharmacol, Mol Pharmacol Lab, DK-2200 Copenhagen, Denmark
[2] AnorMED, Langley, BC V2Y 1N5, Canada
[3] 7TM Pharma AS, DK-2970 Horsholm, Denmark
关键词
D O I
10.1074/jbc.M309546200
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
AMD3100 is a symmetric bicyclam, prototype non-peptide antagonist of the CXCR4 chemokine receptor. Mutational substitutions at 16 positions located in TM-III, -IV, -V, -VI, and -VII lining the main ligand-binding pocket of the CXCR4 receptor identified three acid residues: Asp(171) (AspIV:20), Asp(262) (AspVI:23), and Glu(288) (GluVII:06) as the main interaction points for AMD3100. Molecular modeling suggests that one cyclam ring of AMD3100 interacts with Asp(171) in TM-IV, whereas the other ring is sandwiched between the carboxylic acid groups of Asp(262) and Glu(288) from TM-VI and -VII, respectively. Metal ion binding in the cyclam rings of AMD3100 increased its dependence on Asp(262) and provided a tighter molecular map of the binding site, where borderline mutational hits became clear hits for the Zn(II)-loaded analog. The proposed binding site for AMD3100 was confirmed by a gradual build-up in the rather distinct CXCR3 receptor, for which the compound normally had no effect. Introduction of only a Glu at position VII:06 and the removal of a neutralizing Lys residue at position VII:02 resulted in a 1000-fold increase in affinity of AMD3100 to within 10-fold of its affinity in CXCR4. We conclude that AMD3100 binds through interactions with essentially only three acidic anchor-point residues, two of which are located at one end and the third at the opposite end of the main ligand-binding pocket of the CXCR4 receptor. We suggest that non-peptide antagonists with, for example, improved oral bioavailability can be designed to mimic this interaction and thereby efficiently and selectively block the CXCR4 receptor.
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页码:3033 / 3041
页数:9
相关论文
共 43 条
[1]   ON THE NATURE OF THE HOST-GUEST INTERACTION BETWEEN CYCLAM AND 4-TERT-BUTYLBENZOIC ACID - A SYSTEM PREASSEMBLED FOR METAL-COMPLEX FORMATION [J].
ADAM, KR ;
ANTOLOVICH, M ;
ATKINSON, IM ;
LEONG, AJ ;
LINDOY, LF ;
MCCOOL, BJ ;
DAVIS, RL ;
KENNARD, CHL ;
TASKER, PA .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1994, (13) :1539-1540
[2]  
[Anonymous], [No title captured]
[3]   Antiviral activity of cyclosaligenyl prodrugs of acyclovir, carbovir and abacavir [J].
Balzarini, J ;
Haller-Meier, F ;
De Clercq, E ;
Meier, C .
ANTIVIRAL CHEMISTRY & CHEMOTHERAPY, 2001, 12 (05) :301-306
[4]   CHARACTERIZATION OF 2,2'-BI-(1,4,8,11-TETRA-AZACYCLOTETRADECANE) - X-RAY STRUCTURE AND PROPERTIES OF THE DINUCLEAR COMPLEX [NI2(C20H46N8)][C1O4]4 [J].
BAREFIELD, EK ;
CHUENG, D ;
VANDERVEER, DG .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1981, (06) :302-304
[5]   CHANGES IN THE LEVELS OF INOSITOL PHOSPHATES AFTER AGONIST-DEPENDENT HYDROLYSIS OF MEMBRANE PHOSPHOINOSITIDES [J].
BERRIDGE, MJ ;
DAWSON, RMC ;
DOWNES, CP ;
HESLOP, JP ;
IRVINE, RF .
BIOCHEMICAL JOURNAL, 1983, 212 (02) :473-482
[6]   COMPLEXES OF COBALT(3) WITH A CYCLIC TETRADENTATE SECONDARY AMINE [J].
BOSNICH, B ;
POON, CK ;
TOBE, ML .
INORGANIC CHEMISTRY, 1965, 4 (08) :1102-&
[7]   Synthesis and structure-activity relationships of phenylenebis(methylene)-linked bis-tetraazamacrocycles that inhibit human immunodeficiency virus replication .2. Effect of heteroaromatic linkers on the activity of bicyclams [J].
Bridger, GJ ;
Skerlj, RT ;
Padmanabhan, S ;
Martellucci, SA ;
Henson, GW ;
Abrams, MJ ;
Joao, HC ;
Witvrouw, M ;
DeVreese, K ;
Pauwels, R ;
DeClercq, E .
JOURNAL OF MEDICINAL CHEMISTRY, 1996, 39 (01) :109-119
[8]   SYNTHESIS AND STRUCTURE-ACTIVITY-RELATIONSHIPS OF PHENYLENEBIS(METHYLENE)-LINKED BIS-TETRAAZAMACROCYCLES THAT INHIBIT HIV REPLICATION - EFFECTS OF MACROCYCLIC RING SIZE AND SUBSTITUENTS ON THE AROMATIC LINKER [J].
BRIDGER, GJ ;
SKERLJ, RT ;
THORNTON, D ;
PADMANABHAN, S ;
MARTELLUCCI, SA ;
HENSON, GW ;
ABRAMS, MJ ;
YAMAMOTO, N ;
DEVREESE, K ;
PAUWELS, R ;
DECLERCQ, E .
JOURNAL OF MEDICINAL CHEMISTRY, 1995, 38 (02) :366-378
[9]   Binding of 2-aryl-4-(piperidin-1-yl)butanamines and 1,3,4-trisubstituted pyrrolidines to human CCR5: A molecular modeling-guided mutagenesis study the binding pocket [J].
Castonguay, LA ;
Weng, YM ;
Adolfsen, W ;
Di Salvo, J ;
Kilburn, R ;
Caldwell, CG ;
Daugherty, BL ;
Finke, PE ;
Hale, JJ ;
Lynch, CL ;
Mills, SG ;
MacCoss, M ;
Springer, MS ;
DeMartino, JA .
BIOCHEMISTRY, 2003, 42 (06) :1544-1550
[10]   Chemokine receptors and neural function [J].
Cho, C ;
Miller, RJ .
JOURNAL OF NEUROVIROLOGY, 2002, 8 (06) :573-584