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November 1, 1994Biochemistry24 citations

Thrombin-bound structure of an EGF subdomain from human thrombomodulin determined by transferred nuclear Overhauser effects

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JSJayashree SrinivasanSHSong HuRHRichard Hrabal

Structured PICO

P
Population
Human thrombomodulin peptide (des-Ile420 thrombomodulin peptide) and its target coagulation protein, thrombin
I
Intervention
High-resolution NMR spectroscopy (transferred NOEs, distance geometry, and Monte Carlo calculations)
C
Comparator
Free peptide in solution
O
Outcome
Thrombin-bound structure of the cyclic thrombomodulin peptidesurrogate

The determination of the thrombin-bound structure of the thrombomodulin EGF-like subdomain provides a structural basis for understanding its regulatory functions and guiding the design of specific thrombin inhibitors.

Abstract

The EGF-like domains in human thrombomodulin interact with and change the specificity of thrombin from a procoagulant enzyme to an anticoagulant enzyme. Recent experiments identified the minimal thrombin-binding region of thrombomodulin as the most acidic loop of the fifth EGF-like domain with a sequence of E408CPEGYILDDGFI420CTDIDE. High-resolution NMR spectroscopy was employed to characterize the interaction of a des-Ile420 thrombomodulin peptide, Cys1(409)Pro2Glu3Gly4Tyr5Ile6- Leu7Asp8Asp9Gly10Phe11Cys12Thr13Asp14Ile15Asp16Glu17(426), with its target coagulation protein, thrombin. The disulfide-bonded peptide was found to be structured only upon binding, while neither the linear nor the cyclized peptide exhibited any structural preference free in solution. The thrombin-bound structure of the cyclic thrombomodulin peptide was determined by transferred nuclear Overhauser effects (transferred NOEs) and by distance geometry and Monte Carlo calculations. The thrombin-bound cyclic peptide assumes an overall conformation similar to those observed in the free but intact EGF molecules. There is a type II beta-turn involving residues Pro2-Tyr5, followed by an optimized antiparallel beta-sheet involving residues Gly4-Asp8 and residues Phe11-Ile15. The thrombomodulin peptide provides a potential thrombin-binding surface between residues Tyr5 and Phe11, which are brought close by a chain reversal within the central beta-sheet. Comparison of the thrombin-bound structure of the EGF-like subdomain with other thrombin-peptide complexes revealed that a common thrombin-binding surface can be organized by different secondary structure elements with entirely different peptide sequences. The thrombin-bound structure of the thrombomodulin peptide may serve as a basis to understand the regulatory functions of thrombomodulin and as a guide for the design of specific inhibitors for thrombin.

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Cite This Study

Srinivasan et al. (1994) studied this question.

synapsesocial.com/papers/6a71d560a528af2d65c43837https://doi.org/10.1021/bi00250a007
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Also Consider

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

  1. 1Thrombin‐bound conformation of a cyclic anticoagulant peptide using transferred nuclear Overhauser effect (NOE), distance geometry, and NOE simulations1994 · 11 citations
  2. 2Basis for the reduced affinity of .beta.T- and .gamma.T-thrombin for hirudin1991 · 25 citations
  3. 3A 10-kDa cyanogen bromide fragment from the epidermal growth factor homology domain of rabbit thrombomodulin contains the primary thrombin binding site.1988 · 130 citations
  4. 4EGF‐like domains in extracellular matrix proteins: Localized signals for growth and differentiation?1989 · 306 citations
  5. 5Structure of Human Des(1-45) Factor Xa at 2·2 Å Resolution1993 · 394 citations