FUNCTIONAL MAPPING OF THE SURFACE RESIDUES OF HUMAN THROMBIN

被引:164
作者
TSIANG, M
JAIN, AK
DUNN, KE
ROJAS, ME
LEUNG, LLK
GIBBS, CS
机构
[1] Gilead Sciences Inc., Foster City, CA 94404
关键词
D O I
10.1074/jbc.270.28.16854
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
Utilizing site directed mutagenesis, 77 charged and polar residues that are highly exposed on the surface of human thrombin were systematically substituted with alanine. Functional assays using thrombin mutants identified residues that were required for the recognition and cleavage of the procoagulant substrate fibrinogen (Lys(21), Trp(50), Lys(52), Asn(53)+Thr(55), Lys(65), His(66), Arg(68), Tyr(71), Arg(73), Lys(77), Lys(106)+Lys(107), Asp(193)+Lys(196), Glu(202), Glu(229), Arg(233), Asp(234)) and the anticoagulant substrate protein C (Lys(21), Trp(50), Lys(65), His(66), Arg(68), Tyr(71), Arg(73), Lys(77), Lys(106)+Lys(107), Glu(229), Arg(233)), interactions with the cofactor thrombomodulin (Gln(24), Arg(70)) and inhibition by the thrombin aptamer, an oligonucleotide-based thrombin inhibitor (Lys(65) , His(66), Arg(7)0, Tyr(71) Arg(73)). Although there is considerable overlap between the functional epitopes, distinct and specific residues with unique functions were identified. When the functional residues were mapped on the surface of thrombin, they were located on a single hemisphere of thrombin that included both the active site cleft and the highly basic exosite 1. No functional residues were located on the opposite face of thrombin. Residues with procoagulant or anticoagulant functions were not spatially separated but interdigitated with residues of opposite or shared function. Thus thrombin utilizes the same general surface for substrate recognition regardless of substrate function although the critical contact residues may vary.
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页码:16854 / 16863
页数:10
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