EVIDENCE FOR PROTONATION IN THE HUMAN NEUTROPHIL FORMYL PEPTIDE RECEPTOR-BINDING POCKET

被引:29
作者
FAY, SP
DOMALEWSKI, MD
SKLAR, LA
机构
[1] UNIV NEW MEXICO, SCH MED, ALBUQUERQUE, NM 87131 USA
[2] LOS ALAMOS NATL LAB, LOS ALAMOS, NM 87545 USA
关键词
D O I
10.1021/bi00057a029
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
We have studied the interaction of a family of fluorescent formyl peptides with their receptor using spectrofluorometric and flow cytometric methods. The peptides contained four (CHO-Met-Leu-Phe-Lys-fluorescein), five (CHO-Met-Leu-Phe-Phe-Lys-fluorescein), or six (CHO-Nle-Leu-Phe-Nle-Tyr-Lys-fluorescein) amino acids. As observed in earlier studies, the fluorescent peptides containing four and five amino acids were quenched upon binding to the receptor, while the hexapeptide was not. While the degree of quenching of the bound tetrapeptide was largely unchanged, the quenching of the bound pentapeptide decreased with increasing pH over the range of pH 6.5-9.0. Ligand binding studies have shown that the mole fraction of tetrapeptide or pentapeptide bound in kinetic analysis markedly decreased with increasing pH as a consequence of increasing ligand dissociation rate constant. The dependence of the binding parameters for the hexapeptide on pH was much less pronounced. Over a pH range from pH 7.3 to 9.0, the hexapeptide showed little change in binding affinity, while the tetrapeptide and pentapeptide increased in K(d) approximately 2.0- and 2.5-fold, respectively. These results indicate that the formyl peptide receptor binding pocket contains at least two microenvironments. The pH sensitivity of the pentapeptide quenching is consistent with a protonating environment, while the pH-independent quenching of the tetrapeptide may reflect aromatic stacking or a hydrophobic microenvironment. The pH-dependent ligand dissociation also suggests that the protonation in the pocket stabilizes ligand binding, which may indicate an alteration in the binding pocket structure. Protonation or hydrogen bonding of the pentapeptide may lead to even further stabilization of that ligand.
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页码:1627 / 1631
页数:5
相关论文
共 19 条
[1]   THE HUMAN N-FORMYLPEPTIDE RECEPTOR - CHARACTERIZATION OF 2 CDNA ISOLATES AND EVIDENCE FOR A NEW SUBFAMILY OF G-PROTEIN-COUPLED RECEPTORS [J].
BOULAY, F ;
TARDIF, M ;
BROUCHON, L ;
VIGNAIS, P .
BIOCHEMISTRY, 1990, 29 (50) :11123-11133
[2]   REAL-TIME ANALYSIS OF THE ASSEMBLY OF LIGAND, RECEPTOR, AND G PROTEIN BY QUANTITATIVE FLUORESCENCE FLOW-CYTOMETRY [J].
FAY, SP ;
POSNER, RG ;
SWANN, WN ;
SKLAR, LA .
BIOCHEMISTRY, 1991, 30 (20) :5066-5075
[3]   FORMYL PEPTIDE CHEMOATTRACTANTS - A MODEL OF THE RECEPTOR ON RABBIT NEUTROPHILS [J].
FREER, RJ ;
DAY, AR ;
MUTHUKUMARASWAMY, N ;
PINON, D ;
WU, A ;
SHOWELL, HJ ;
BECKER, EL .
BIOCHEMISTRY, 1982, 21 (02) :257-263
[4]  
Haugland R P., 1989, HDB FLUORESCENT PROB
[5]   3-DIMENSIONAL STRUCTURE OF A FLUORESCEIN FAB COMPLEX CRYSTALLIZED IN 2-METHYL-2,4-PENTANEDIOL [J].
HERRON, JN ;
HE, XM ;
MASON, ML ;
VOSS, EW ;
EDMUNDSON, AB .
PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 1989, 5 (04) :271-280
[6]   FLUORESCENCE POLARIZATION AND INTENSITY KINETIC STUDIES OF ANTIFLUORESCEIN ANTIBODY OBTAINED AT DIFFERENT STAGES OF IMMUNE-RESPONSE [J].
LEVISON, SA ;
HICKS, AN ;
PORTMANN, AJ ;
DANDLIKER, WB .
BIOCHEMISTRY, 1975, 14 (17) :3778-3786
[7]   USE OF RESONANCE INTERACTION IN STUDY OF CHAIN FOLDING OF INSULIN IN SOLUTION [J].
MERCOLA, DA ;
MORRIS, JWS ;
ARQUILLA, ER .
BIOCHEMISTRY, 1972, 11 (21) :3860-&
[8]  
MUTHUKUMARASWAM.N, 1987, METHOD ENZYMOL, V162, P132
[9]  
NIEDEL J, 1979, J BIOL CHEM, V254, P700
[10]  
SKLAR LA, 1984, J BIOL CHEM, V259, P5661