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PMID: 1518046 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Refined 2.3 A X-ray crystal structure of bovine thrombin complexes formed with the benzamidine and arginine-based thrombin inhibitors NAPAP, 4-TAPAP and MQPA. A starting point for improving antithrombotics.

Journal of molecular biology ·Vol. 226 ·No. 4 ·1992-08-20 ·Pages 1085-99

Brandstetter H, Turk D, Hoeffken HW, Grosse D, Stürzebecher J, Martin PD, Edwards BF, Bode W

Abstract

Well-diffracting crystals of bovine epsilon-thrombin in complex with several "non-peptidic" benzamidine and arginine-based thrombin inhibitors have been obtained by co-crystallization. The 2.3 A crystal structures of three complexes formed either with NAPAP, 4-TAPAP, or MQPA, were solved by Patterson search methods and refined to crystallographic R-values of 0.167 to 0.178. The active-site environment of thrombin is only slightly affected by binding of the different inhibitors; in particular, the exposed "60-insertion loop" essentially maintains its typical projecting structure. The D-stereoisomer of NAPAP and the L-stereoisomer of MQPA bind to thrombin with very similar conformations, as previously inferred from their binding to bovine trypsin; the arginine side-chain of the latter inserts into the specificity pocket in a "non-canonical" manner. The L-stereoisomer of 4-TAPAP, whose binding geometry towards trypsin was only poorly defined, is bound to the thrombin active-site in a compact conformation. In contrast to NAPAP, the distal p-amidino/guanidino groups of 4-TAPAP and MQPA do not interact with the carboxylate group of Asp189 in the thrombin specificity pocket in a "symmetrical" twin N-twin O manner, but through "lateral" single N-twin O contacts; in contrast to the p-amidino group of 4-TAPAP, however, the guanidyl group of MQPA packs favourably in the pocket due to an elaborate hydrogen bond network, which includes two entrapped water molecules. These thrombin structures confirm previous conclusions of the important role of the intermolecular hydrogen bonds formed with Gly216, and of the good sterical fit of the terminal bulky hydrophobic inhibitor groups with the hydrophobic aryl binding site and the S2-cavity, respectively, for tight thrombin active site binding of these non-peptidic inhibitors. These accurate crystal structures are presumed to be excellent starting points for the design and the elaboration of improved antithrombotics.

MeSH Terms
Amidines/chemistry,metabolism,pharmacology Amino Acid Sequence Animals Antithrombins/chemistry,metabolism,pharmacology Arginine/analogs & derivatives Benzamidines/chemistry,metabolism,pharmacology Binding Sites Cattle Crystallography Dipeptides/chemistry,metabolism,pharmacology Fibrinolytic Agents/chemistry,metabolism,pharmacology Hydrogen Bonding Ligands Models, Molecular Molecular Sequence Data Pipecolic Acids/chemistry,metabolism,pharmacology Piperidines/chemistry,metabolism,pharmacology Protein Conformation Structure-Activity Relationship Sulfonamides Thrombin/antagonists & inhibitors,chemistry,metabolism
Chemicals
Amidines Antithrombins Benzamidines Dipeptides Fibrinolytic Agents Ligands Pipecolic Acids Piperidines Sulfonamides N(alpha)-(4-toluenesulfonyl)-4-amidinophenylalanylpiperidine N(alpha)-(2-naphthylsulfonylglycyl)-4-amidinophenylalanine piperidide Arginine Thrombin argatroban benzamidine
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Brandstetter H
Max-Planck-Institut für Biochemie, Martinsried, Germany.
Turk D
Hoeffken H W
Grosse D
Stürzebecher J
Martin P D
Edwards B F
Bode W
Article Info
Journal
Journal of molecular biology
Abbr.
J Mol Biol
ISSN
0022-2836
Published
1992-08-20
Pages
1085-99
Language
English
Region
England
NLM ID
2985088R
Subset
IM
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