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1.
J Appl Lab Med ; 3(3): 511-514, 2018 Nov 01.
Article de Anglais | MEDLINE | ID: mdl-33636920
2.
Arch Pathol Lab Med ; 140(11): 1187-1188, 2016 11.
Article de Anglais | MEDLINE | ID: mdl-27399213
3.
J Biol Chem ; 286(36): 31904-14, 2011 Sep 09.
Article de Anglais | MEDLINE | ID: mdl-21778227

RÉSUMÉ

To select residues in coagulation factor XIa (FXIa) potentially important for substrate and inhibitor interactions, we examined the crystal structure of the complex between the catalytic domain of FXIa and the Kunitz protease inhibitor (KPI) domain of a physiologically relevant FXIa inhibitor, protease nexin 2 (PN2). Six FXIa catalytic domain residues (Glu(98), Tyr(143), Ile(151), Arg(3704), Lys(192), and Tyr(5901)) were subjected to mutational analysis to investigate the molecular interactions between FXIa and the small synthetic substrate (S-2366), the macromolecular substrate (factor IX (FIX)) and inhibitor PN2KPI. Analysis of all six Ala mutants demonstrated normal K(m) values for S-2366 hydrolysis, indicating normal substrate binding compared with plasma FXIa; however, all except E98A and K192A had impaired values of k(cat) for S-2366 hydrolysis. All six Ala mutants displayed deficient k(cat) values for FIX hydrolysis, and all were inhibited by PN2KPI with normal values of K(i) except for K192A, and Y5901A, which displayed increased values of K(i). The integrity of the S1 binding site residue, Asp(189), utilizing p-aminobenzamidine, was intact for all FXIa mutants. Thus, whereas all six residues are essential for catalysis of the macromolecular substrate (FIX), only four (Tyr(143), Ile(151), Arg(3704), and Tyr(5901)) are important for S-2366 hydrolysis; Glu(98) and Lys(192) are essential for FIX but not S-2366 hydrolysis; and Lys(192) and Tyr(5901) are required for both inhibitor and macromolecular substrate interactions.


Sujet(s)
Précurseur de la protéine bêta-amyloïde/physiologie , Domaine catalytique , Facteur XIa/antagonistes et inhibiteurs , Facteur XIa/physiologie , Séquence d'acides aminés , Substitution d'acide aminé , Aprotinine , Catalyse , Humains , Cinétique , Inhibiteurs de protéases , Structure tertiaire des protéines
4.
Biochemistry ; 46(50): 14450-60, 2007 Dec 18.
Article de Anglais | MEDLINE | ID: mdl-18020374

RÉSUMÉ

The zymogen, factor XI, and the enzyme, factor XIa, interact specifically with functional receptors on the surface of activated platelets. These studies were initiated to identify the molecular subdomain within factor XIa that binds to activated platelets. Both factor XIa (Ki approximately 1.4 nM) and a chimeric factor XIa containing the Apple 3 domain of prekallikrein (Ki approximately 2.7 nM) competed with [125I]factor XIa for binding sites on activated platelets, suggesting that the factor XIa binding site for platelets is not located in the Apple 3 domain which mediates factor XI binding to platelets. The recombinant catalytic domain (Ile370-Val607) inhibited the binding of [125I]factor XIa to the platelets (Ki approximately 3.5 nM), whereas the recombinant factor XI heavy chain did not, demonstrating that the platelet binding site is located in the light chain of factor XIa. A conformationally constrained cyclic peptide (Cys527-Cys542) containing a high-affinity (KD approximately 86 nM) heparin-binding site within the catalytic domain of factor XIa also displaced [125I]factor XIa from the surface of activated platelets (Ki approximately 5.8 nM), whereas a scrambled peptide of identical composition was without effect, suggesting that the binding site in factor XIa that interacts with the platelet surface resides in the catalytic domain near the heparin binding site of factor XIa. These data support the conclusion that a conformational transition accompanies conversion of factor XI to factor XIa that conceals the Apple 3 domain factor XI (zymogen) platelet binding site and exposes the factor XIa (enzyme) platelet binding site within the catalytic domain possibly comprising residues Cys527-Cys542.


Sujet(s)
Plaquettes/métabolisme , Facteur XIa/composition chimique , Facteur XIa/métabolisme , Séquence d'acides aminés , Sites de fixation , Catalyse , Lignée cellulaire , Cystéine/composition chimique , Cystéine/génétique , Cystéine/métabolisme , Test ELISA , Facteur XI/composition chimique , Facteur XI/génétique , Facteur XI/métabolisme , Facteur XIIa/composition chimique , Facteur XIIa/génétique , Facteur XIIa/métabolisme , Facteur XIa/génétique , Humains , Modèles moléculaires , Données de séquences moléculaires , Mutagenèse dirigée , Prékallicréine/composition chimique , Prékallicréine/génétique , Prékallicréine/métabolisme , Liaison aux protéines , Structure secondaire des protéines , Structure tertiaire des protéines , Similitude de séquences d'acides aminés
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