Two clusters of charged residues located in the electropositive face of the von Willebrand factor A1 domain are essential for heparin binding

被引:23
作者
Rastegar-Lari, G
Villoutreix, BO
Ribba, AS
Legendre, P
Meyer, D
Baruch, D
机构
[1] INSERM, U143, F-94276 Le Kremlin Bicetre, France
[2] INSERM U428, Paris, France
关键词
D O I
10.1021/bi020044f
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 VWF Al domain seems to possess two heparin binding regions (residues 565-587 and 633-648) displaying positively charged amino acids, but the overall polyanion-Al domain interaction scheme remains essentially elusive. To probe this molecular reaction as well as the role of electrostatic forces in VWF-heparin interaction, we performed mutagenesis and molecular modeling experiments. Fifteen mutated rVwFs were expressed [R571A, K572A, R573A, K585A, R571A/K572A/R573A, R578A/R579A, R578A/R579A/K585A, R571A/K572A/R573A/R578A/R579A/K585A (6A), K642G. K643G, K644G, K645G, K642G/K645G, K643G/K644G, and K642G/K643G/K644G/K645G (4G)]. Experimental results indicate that the multimeric structure of the mutants was similar to that of wild-type (WT) rVWF and that all rVWFs displayed normal binding to four conformation-dependent mAbs directed against the Al domain. Three variants displayed significant reductions in the level of heparin binding. The 6A variant showed 39.2 +/- 1.3% of the WT rVWF level (p < 0.005), while mutants K643G/K644G and 4G showed 63.6 +/- 3.2 and 53.3 +/- 5% of the WT rVWF level, respectively (p < 0.005). Computational investigations showed that one face of the Al domain is strongly electropositive, indicating that electrostatic forces should be essential in steering heparin onto its binding site. In agreement with our experimental data, the most striking alterations of the electrostatic potential contours were seen for mutants 4G, K643G/K644G, and 6A. Our data suggest that two clusters, one at positions 571-573, 578, 579, and 585 and the other at positions 642-645, act in concert for the recognition of heparin, forming a single extended binding surface across the electropositive face of the VWF A I domain. A structural model of the VWF A I domain-heparin complex is proposed, taking into account both experimental and Computer modeling data.
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页码:6668 / 6678
页数:11
相关论文
共 38 条
[1]   INHIBITION OF BINDING OF VON-WILLEBRAND-FACTOR TO THE PLATELET GLYCOPROTEIN IB-IX COMPLEX, HEPARIN AND SULFATIDES BY POLYANIONIC COMPOUNDS - THE MECHANISM OF MODULATION OF THE ADHESIVE FUNCTION OF VON-WILLEBRAND-FACTOR [J].
ANDREWS, RK ;
BENDALL, LJ ;
BOOTH, WJ ;
BERNDT, MC .
PLATELETS, 1995, 6 (05) :252-258
[2]  
BARUCH D, 1994, THROMB HAEMOSTASIS, V71, P141
[3]  
CASU B, 1989, ANN NY ACAD SCI, V556, P1
[4]   Crystal structure of the von Willebrand factor A1 domain in complex with the function blocking NMC-4 Fab [J].
Celikel, R ;
Varughese, KI ;
Madhusudan ;
Yoshioka, A ;
Ware, J ;
Ruggeri, ZM .
NATURE STRUCTURAL BIOLOGY, 1998, 5 (03) :189-194
[5]   A MONOCLONAL-ANTIBODY (B724) TO VON-WILLEBRAND-FACTOR RECOGNIZING AN EPITOPE WITHIN THE A1 DISULFIDE LOOP (CYS509-CYS695) DISCRIMINATES BETWEEN TYPE 2A AND TYPE 2B VON-WILLEBRAND DISEASE [J].
CHRISTOPHE, O ;
ROUAULT, C ;
OBERT, B ;
PIETU, G ;
MEYER, D ;
GIRMA, JP .
BRITISH JOURNAL OF HAEMATOLOGY, 1995, 90 (01) :195-203
[6]   SITE-DIRECTED MUTAGENESIS OF VIRTUALLY ANY PLASMID BY ELIMINATING A UNIQUE SITE [J].
DENG, WP ;
NICKOLOFF, JA .
ANALYTICAL BIOCHEMISTRY, 1992, 200 (01) :81-88
[7]  
Depraetere H, 1998, BLOOD, V91, P3792
[8]  
DEROMEUF C, 1993, THROMB HAEMOSTASIS, V69, P436
[9]   Crystal structure of the von Willebrand factor A1 domain and implications for the binding of platelet glycoprotein Ib [J].
Emsley, J ;
Cruz, M ;
Handin, R ;
Liddington, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (17) :10396-10401
[10]  
FRETTO LJ, 1986, J BIOL CHEM, V261, P5679