Next Article in Journal
Improved Osprey Optimization Algorithm Based on Two-Color Complementary Mechanism for Global Optimization and Engineering Problems
Previous Article in Journal
Smart Multi-Responsive Biomaterials and Their Applications for 4D Bioprinting
Previous Article in Special Issue
Review of the Brain’s Behaviour after Injury and Disease for Its Application in an Agent-Based Model (ABM)
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Chemical Synthesis and Structure–Activity Relationship Studies of the Coagulation Factor Xa Inhibitor Tick Anticoagulant Peptide from the Hematophagous Parasite Ornithodoros moubata

by
Vincenzo De Filippis
1,*,
Laura Acquasaliente
1,
Andrea Pierangelini
1 and
Oriano Marin
2
1
Laboratory of Protein Chemistry & Molecular Haematology, Department of Pharmaceutical and Pharmacological Sciences, School of Medicine, University of Padova, Via F. Marzolo 5, 35131 Padua, Italy
2
Department of Biomedical Sciences, School of Medicine, University of Padova, Via Trieste 75, 35121 Padua, Italy
*
Author to whom correspondence should be addressed.
Biomimetics 2024, 9(8), 485; https://doi.org/10.3390/biomimetics9080485
Submission received: 10 July 2024 / Revised: 29 July 2024 / Accepted: 5 August 2024 / Published: 12 August 2024
(This article belongs to the Special Issue Biomimetic Approaches in Healthcare—Innovations Inspired by Nature)

Abstract

Tick Anticoagulant Peptide (TAP), a 60-amino acid protein from the soft tick Ornithodoros moubata, inhibits activated coagulation factor X (fXa) with almost absolute specificity. Despite TAP and Bovine Pancreatic Trypsin Inhibitor (BPTI) (i.e., the prototype of the Kunitz-type protease inhibitors) sharing a similar 3D fold and disulphide bond topology, they have remarkably different amino acid sequence (only ~24% sequence identity), thermal stability, folding pathways, protease specificity, and even mechanism of protease inhibition. Here, fully active and correctly folded TAP was produced in reasonably high yields (~20%) by solid-phase peptide chemical synthesis and thoroughly characterised with respect to its chemical identity, disulphide pairing, folding kinetics, conformational dynamics, and fXa inhibition. The versatility of the chemical synthesis was exploited to perform structure–activity relationship studies on TAP by incorporating non-coded amino acids at positions 1 and 3 of the inhibitor. Using Hydrogen–Deuterium Exchange Mass Spectrometry, we found that TAP has a remarkably higher conformational flexibility compared to BPTI, and propose that these different dynamics could impact the different folding pathway and inhibition mechanisms of TAP and BPTI. Hence, the TAP/BPTI pair represents a nice example of divergent evolution, while the relative facility of TAP synthesis could represent a good starting point to design novel synthetic analogues with improved pharmacological profiles.
Keywords: natural anticoagulants; tick anticoagulant peptide; non-coded amino acids; protease inhibitors; HDX-MS; peptide synthesis; molecular recognition; coagulation natural anticoagulants; tick anticoagulant peptide; non-coded amino acids; protease inhibitors; HDX-MS; peptide synthesis; molecular recognition; coagulation

Share and Cite

MDPI and ACS Style

De Filippis, V.; Acquasaliente, L.; Pierangelini, A.; Marin, O. Chemical Synthesis and Structure–Activity Relationship Studies of the Coagulation Factor Xa Inhibitor Tick Anticoagulant Peptide from the Hematophagous Parasite Ornithodoros moubata. Biomimetics 2024, 9, 485. https://doi.org/10.3390/biomimetics9080485

AMA Style

De Filippis V, Acquasaliente L, Pierangelini A, Marin O. Chemical Synthesis and Structure–Activity Relationship Studies of the Coagulation Factor Xa Inhibitor Tick Anticoagulant Peptide from the Hematophagous Parasite Ornithodoros moubata. Biomimetics. 2024; 9(8):485. https://doi.org/10.3390/biomimetics9080485

Chicago/Turabian Style

De Filippis, Vincenzo, Laura Acquasaliente, Andrea Pierangelini, and Oriano Marin. 2024. "Chemical Synthesis and Structure–Activity Relationship Studies of the Coagulation Factor Xa Inhibitor Tick Anticoagulant Peptide from the Hematophagous Parasite Ornithodoros moubata" Biomimetics 9, no. 8: 485. https://doi.org/10.3390/biomimetics9080485

APA Style

De Filippis, V., Acquasaliente, L., Pierangelini, A., & Marin, O. (2024). Chemical Synthesis and Structure–Activity Relationship Studies of the Coagulation Factor Xa Inhibitor Tick Anticoagulant Peptide from the Hematophagous Parasite Ornithodoros moubata. Biomimetics, 9(8), 485. https://doi.org/10.3390/biomimetics9080485

Article Metrics

Back to TopTop