Bivalent Ligands Targeting Chemokine Receptor Dimerization: Molecular Design and Functional Studies

被引:14
作者
Arnatt, Christopher Kent [1 ]
Zhang, Yan [1 ]
机构
[1] Virginia Commonwealth Univ, Dept Med Chem, Richmond, VA 23298 USA
关键词
Bivalent ligand; CCR5; chemokine receptor; CXCR4; dimerization; GPCR; MOR; PROTEIN-COUPLED RECEPTOR; MU-OPIOID RECEPTOR; CRYSTAL-STRUCTURE; CXCR4; ANTAGONISTS; LIVING CELLS; BIOLOGICAL EVALUATION; DIPEPTIDE ISOSTERES; PHARMACOPHORE MODEL; DRUG DISCOVERY; HIV-INFECTION;
D O I
10.2174/1568026614666140827144752
中图分类号
R914 [药物化学];
学科分类号
100705 [微生物与生化药学];
摘要
Increasing evidence has shown that chemokine receptors may form functional dimers with unique pharmacological profiles. A common practice to characterize such G protein-coupled receptor dimerization processes is to apply bivalent ligands as chemical probes which can interact with both receptors simultaneously. Currently, two chemokine receptor dimers have been studied by applying bivalent compounds: the CXCR4-CXCR4 homodimer and the CCR5-MOR heterodimer. These bivalent compounds have revealed how dimerization influences receptor function and may lead to novel therapeutics. Future design of bivalent ligands for chemokine receptor dimers may be aided with the recently available CXCR4 homodimer, and CCR5 monomer crystal structures by more accurately simulating chemokine receptors and their dimers.
引用
收藏
页码:1606 / 1618
页数:13
相关论文
共 109 条
[1]
Design of a Novel Cyclotide-Based CXCR4 Antagonist with Anti-Human Immunodeficiency Virus (HIV)-1 Activity [J].
Aboye, Teshome L. ;
Ha, Helen ;
Majumder, Subhabrata ;
Christ, Frauke ;
Debyser, Zeger ;
Shekhtman, Alexander ;
Neamati, Nouri ;
Camarero, Julio A. .
JOURNAL OF MEDICINAL CHEMISTRY, 2012, 55 (23) :10729-10734
[2]
CC CKRS: A RANTES, MIP-1 alpha, MIP-1 beta receptor as a fusion cofactor for macrophage-tropic HIV-1 [J].
Alkhatib, G ;
Combadiere, C ;
Broder, CC ;
Feng, Y ;
Kennedy, PE ;
Murphy, PM ;
Berger, EA .
SCIENCE, 1996, 272 (5270) :1955-1958
[3]
Detection of β2-adrenergic receptor dimerization in living cells using bioluminescence resonance energy transfer (BRET) [J].
Angers, S ;
Salahpour, A ;
Joly, E ;
Hilairet, S ;
Chelsky, D ;
Dennis, M ;
Bouvier, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (07) :3684-3689
[4]
The effects of illicit drugs on the HIV infected brain [J].
Anthony, Iain Crawford ;
Arango, Juan-Carlos ;
Stephens, Ben ;
Simmonds, Peter ;
Bell, Jeanne Elisabeth .
FRONTIERS IN BIOSCIENCE-LANDMARK, 2008, 13 :1294-1307
[5]
Arnatt C. K., 2013, COMPUTATIONAL APPROA, P117
[6]
Arnatt C. K., 2013, DEV ANTAGONISTS TARG, P92
[7]
Dimerization of G-protein-coupled receptors: roles in signal transduction [J].
Bai, M .
CELLULAR SIGNALLING, 2004, 16 (02) :175-186
[8]
Comprehensive repertoire and phylogenetic analysis of the G protein-coupled receptors in human and mouse [J].
Bjarnadottir, Thora K. ;
Gloriam, David E. ;
Hellstrand, Sofia H. ;
Kristiansson, Helena ;
Fredriksson, Robert ;
Schioth, Helgi B. .
GENOMICS, 2006, 88 (03) :263-273
[9]
The influence of rigid or flexible linkage between two ligands on the effective affinity and avidity for reversible interactions with bivalent receptors [J].
Bobrovnik, S. A. .
JOURNAL OF MOLECULAR RECOGNITION, 2007, 20 (04) :253-262
[10]
Oligoproline helices as structurally defined scaffolds for oligomeric G protein-coupled receptor ligands [J].
Bonger, Kimberly M. ;
Kapoerchan, Varsha V. ;
Grotenbreg, Gijsbert M. ;
van Koppen, Chris J. ;
Timmers, C. Marco ;
van der Marel, Gijsbert A. ;
Overkleeft, Herman S. .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2010, 8 (08) :1881-1884