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December 6, 1994Biochemistry30 citationsOpen Access

Design of Potent Bivalent Thrombin Inhibitors Based on Hirudin Sequence: Incorporation of Nonsubstrate-Type Active Site Inhibitors

YTYuko TsudaMCMirosław CyglerBGBernard F. Gibbs

Structured PICO

P
Population
In vitro enzymatic assays using human alpha-thrombin and bovine fibrinogen, and rat kidney membranes for proteolytic assays.
I
Intervention
Synthetic bivalent thrombin inhibitors incorporating nonsubstrate-type active site inhibitors (e.g., dansyl-Arg-(D-pipecolic acid)).
C
Comparator
Similar compounds having D-Phe-Pro-Arg as their substrate-type inhibitor moiety or L-pipecolic acid.
O
Outcome
Inhibition constant (Ki) for human alpha-thrombin.surrogate

Incorporation of nonsubstrate-type active site inhibitors into hirudin-based bivalent inhibitors significantly improves their affinity for thrombin and eliminates the scissile peptide bond.

Abstract

Hirudin from medicinal leech is the most potent and specific thrombin inhibitor from medicinal leech with a K(i) value of 2.2 x 10(-14) M. It consists of an active site blocking moiety, hirudin1-48, a fibrinogen-recognition exo-site binding moiety, hirudin55-65, and a linker, hirudin49-54, connecting these inhibitor moieties. Synthetic inhibitors were designed based on the C-terminal portion of hirudin. The bulky active site blocking moiety, hirudin1-48, was replaced by small nonsubstrate-type active site inhibitors of thrombin, e.g., dansyl-Arg-(D-pipecolic acid). The linker moiety was replaced by omega-amino acids of (12-aminododecanoic acid)-(4-aminobutyric acid), and hirudin55-65 was used as a fibrinogen-recognition exo-site binding moiety in most of the inhibitors. The crystal structure of the inhibitor in complex with human alpha-thrombin showed that dansyl, Arg, and D-pipecolic acid of the active site blocking moiety occupy S3, S1, and S2 subsites of thrombin, respectively, and were therefore designated as P3, P1, and P2 residues. The use of dansyl-Arg-(D-pipecolic acid) improved the affinity (K(i)) of the inhibitor 10-100-fold (down to 1.70 x 10(-11) M) compared to that of the similar compounds having D-Phe-Pro-Arg as their substrate-type inhibitor moiety (K(i) = 10(-9)-10(-10) M). The linker connected to P2 residue eliminated the scissile peptide bond. The inhibitor was also stable against human plasma proteases. Further inhibitor design revealed that the toxic dansyl group could be replaced by 4-tert-butylbenzenesulfonyl group and 1- or 2-naphthalenesulfonyl group for in vivo studies.(ABSTRACT TRUNCATED AT 250 WORDS)

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Cite This Study

Tsuda et al. (1994) studied this question.

synapsesocial.com/papers/6a85720b02d378e0d14e2b73https://doi.org/10.1021/bi00252a010
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1HIRUDIN: Clinical Potential of a Thrombin Inhibitor1994 · 62 citations
  2. 2Inhibition of clot-bound and free (fluid-phase thrombin) by a novel synthetic thrombin inhibitor (Ro 46-6240), recombinant hirudin and heparin in human plasma1994 · 43 citations
  3. 3Current Developments in Antithrombotic Therapy: The Role of Antithrombin Agents2002 · 8 citations
  4. 4Inhibition of thrombin: relevance to anti-thrombosis strategy2006 · 9 citations
  5. 5Kinetics of the inhibition of thrombin by hirudin1986 · 587 citations