The Formyl Peptide Receptors: Diversity of Ligands and Mechanism for Recognition

被引:207
作者
He, Hui-Qiong [1 ,2 ]
Ye, Richard D. [2 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Pharm, Shanghai 200240, Peoples R China
[2] Inst Chinese Med Sci, Macau 999078, Peoples R China
基金
中国国家自然科学基金;
关键词
G protein-coupled receptors; formyl peptides; inflammation; phagocytes; PROTEIN-COUPLED RECEPTOR; SERUM-AMYLOID-A; METHIONYL-LEUCYL-PHENYLALANINE; N-FORMYLPEPTIDE RECEPTOR; CHEMOTAXIS INHIBITORY PROTEIN; THROUGHPUT FLOW-CYTOMETRY; HUMAN NEUTROPHIL ACTIVATION; PHENOL-SOLUBLE MODULINS; SMALL-MOLECULE AGONISTS; LIPOXIN A(4);
D O I
10.3390/molecules22030455
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 formyl peptide receptors (FPRs) are G protein-coupled receptors that transduce chemotactic signals in phagocytes and mediate host-defense as well as inflammatory responses including cell adhesion, directed migration, granule release and superoxide production. In recent years, the cellular distribution and biological functions of FPRs have expanded to include additional roles in homeostasis of organ functions and modulation of inflammation. In a prototype, FPRs recognize peptides containing N-formylated methionine such as those produced in bacteria and mitochondria, thereby serving as pattern recognition receptors. The repertoire of FPR ligands, however, has expanded rapidly to include not only N-formyl peptides from microbes but also non-formyl peptides of microbial and host origins, synthetic small molecules and an eicosanoid. How these chemically diverse ligands are recognized by the three human FPRs (FPR1, FPR2 and FPR3) and their murine equivalents is largely unclear. In the absence of crystal structures for the FPRs, site-directed mutagenesis, computer-aided ligand docking and structural simulation have led to the identification of amino acids within FPR1 and FPR2 that interact with several formyl peptides. This review article summarizes the progress made in the understanding of FPR ligand diversity as well as ligand recognition mechanisms used by these receptors.
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页数:33
相关论文
共 229 条
[1]   Uteroglobin, a Possible Ligand of the Lipoxin Receptor Inhibits Serum Amyloid A-Driven Inflammation [J].
Antico, Giovanni ;
Aloman, Monica ;
Lakota, Katja ;
Miele, Lucio ;
Fiore, Stefano ;
Sodin-Semrl, Snezna .
MEDIATORS OF INFLAMMATION, 2014, 2014
[2]   INCREASED NEUTROPHIL RECEPTORS FOR AND RESPONSE TO THE PROINFLAMMATORY BACTERIAL PEPTIDE FORMYL-METHIONYL-LEUCYL-PHENYLALANINE IN CROHNS-DISEASE [J].
ANTON, PA ;
TARGAN, SR ;
SHANAHAN, F .
GASTROENTEROLOGY, 1989, 97 (01) :20-28
[3]   ANTIBIOTICS AND PEPTIDES WITH AGONIST AND ANTAGONIST CHEMOTACTIC ACTIVITY [J].
ASWANIKUMAR, S ;
SCHIFFMANN, E ;
CORCORAN, BA ;
PERT, CB ;
MORELL, JL ;
GROSS, E .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1978, 80 (02) :464-471
[4]   Th17 Cell Induction by Adhesion of Microbes to Intestinal Epithelial Cells [J].
Atarashi, Koji ;
Tanoue, Takeshi ;
Ando, Minoru ;
Kamada, Nobuhiko ;
Nagano, Yuji ;
Narushima, Seiko ;
Suda, Wataru ;
Imaoka, Akemi ;
Setoyama, Hiromi ;
Nagamori, Takashi ;
Ishikawa, Eiji ;
Shima, Tatsuichiro ;
Hara, Taeko ;
Kado, Shoichi ;
Jinnohara, Toshi ;
Ohno, Hiroshi ;
Kondo, Takashi ;
Toyooka, Kiminori ;
Watanabe, Eiichiro ;
Yokoyama, Shin-ichiro ;
Tokoro, Shunji ;
Mori, Hiroshi ;
Noguchi, Yurika ;
Morita, Hidetoshi ;
Ivanov, Ivaylo I. ;
Sugiyama, Tsuyoshi ;
Nunez, Gabriel ;
Camp, J. Gray ;
Hattori, Masahira ;
Umesaki, Yoshinori ;
Honda, Kenya .
CELL, 2015, 163 (02) :367-380
[5]  
Babich JW, 1997, J NUCL MED, V38, P1316
[6]   Identification of peptides that antagonize formyl peptide receptor-like 1-mediated signaling [J].
Bae, YS ;
Lee, HY ;
Jo, EJ ;
Kim, JI ;
Kang, HK ;
Ye, RD ;
Kwak, JY ;
Ryu, SH .
JOURNAL OF IMMUNOLOGY, 2004, 173 (01) :607-614
[7]  
BAO L, 1992, Genomics, V13, P437, DOI 10.1016/0888-7543(92)90265-T
[8]   Annexin A1 Interaction with the FPR2/ALX Receptor IDENTIFICATION OF DISTINCT DOMAINS AND DOWNSTREAM ASSOCIATED SIGNALING [J].
Bena, Stefania ;
Brancaleone, Vincenzo ;
Wang, Ji Ming ;
Perretti, Mauro ;
Flower, Roderick J. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (29) :24690-24697
[9]   Interferon and granulopoiesis signatures in systemic lupus erythematosus blood [J].
Bennett, L ;
Palucka, AK ;
Arce, E ;
Cantrell, V ;
Borvak, J ;
Banchereau, J ;
Pascual, V .
JOURNAL OF EXPERIMENTAL MEDICINE, 2003, 197 (06) :711-723
[10]   FORMYL-METHIONYL-LEUCYL-PHENYLALANINE CAUSES BRONCHOCONSTRICTION IN RABBITS [J].
BEREND, N ;
ARMOUR, CL ;
BLACK, JL .
AGENTS AND ACTIONS, 1986, 17 (5-6) :466-471