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A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa

Serine proteases play pivotal roles in normal physiology and a spectrum of patho-physiological processes. Accordingly, there is considerable interest in the discovery and design of potent serine protease inhibitors for therapeutic applications. This led to concerted efforts to discover versatile and...

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Autores principales: Chen, Xingchen, Leahy, Darren, Van Haeften, Jessica, Hartfield, Perry, Prentis, Peter J., van der Burg, Chloé A., Surm, Joachim M., Pavasovic, Ana, Madio, Bruno, Hamilton, Brett R., King, Glenn F., Undheim, Eivind A. B., Brattsand, Maria, Harris, Jonathan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6950308/
https://www.ncbi.nlm.nih.gov/pubmed/31842369
http://dx.doi.org/10.3390/md17120701
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author Chen, Xingchen
Leahy, Darren
Van Haeften, Jessica
Hartfield, Perry
Prentis, Peter J.
van der Burg, Chloé A.
Surm, Joachim M.
Pavasovic, Ana
Madio, Bruno
Hamilton, Brett R.
King, Glenn F.
Undheim, Eivind A. B.
Brattsand, Maria
Harris, Jonathan M.
author_facet Chen, Xingchen
Leahy, Darren
Van Haeften, Jessica
Hartfield, Perry
Prentis, Peter J.
van der Burg, Chloé A.
Surm, Joachim M.
Pavasovic, Ana
Madio, Bruno
Hamilton, Brett R.
King, Glenn F.
Undheim, Eivind A. B.
Brattsand, Maria
Harris, Jonathan M.
author_sort Chen, Xingchen
collection PubMed
description Serine proteases play pivotal roles in normal physiology and a spectrum of patho-physiological processes. Accordingly, there is considerable interest in the discovery and design of potent serine protease inhibitors for therapeutic applications. This led to concerted efforts to discover versatile and robust molecular scaffolds for inhibitor design. This investigation is a bioprospecting study that aims to isolate and identify protease inhibitors from the cnidarian Actinia tenebrosa. The study isolated two Kunitz-type protease inhibitors with very similar sequences but quite divergent inhibitory potencies when assayed against bovine trypsin, chymostrypsin, and a selection of human sequence-related peptidases. Homology modeling and molecular dynamics simulations of these inhibitors in complex with their targets were carried out and, collectively, these methodologies enabled the definition of a versatile scaffold for inhibitor design. Thermal denaturation studies showed that the inhibitors were remarkably robust. To gain a fine-grained map of the residues responsible for this stability, we conducted in silico alanine scanning and quantified individual residue contributions to the inhibitor’s stability. Sequences of these inhibitors were then used to search for Kunitz homologs in an A. tenebrosa transcriptome library, resulting in the discovery of a further 14 related sequences. Consensus analysis of these variants identified a rich molecular diversity of Kunitz domains and expanded the palette of potential residue substitutions for rational inhibitor design using this domain.
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spelling pubmed-69503082020-01-16 A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa Chen, Xingchen Leahy, Darren Van Haeften, Jessica Hartfield, Perry Prentis, Peter J. van der Burg, Chloé A. Surm, Joachim M. Pavasovic, Ana Madio, Bruno Hamilton, Brett R. King, Glenn F. Undheim, Eivind A. B. Brattsand, Maria Harris, Jonathan M. Mar Drugs Article Serine proteases play pivotal roles in normal physiology and a spectrum of patho-physiological processes. Accordingly, there is considerable interest in the discovery and design of potent serine protease inhibitors for therapeutic applications. This led to concerted efforts to discover versatile and robust molecular scaffolds for inhibitor design. This investigation is a bioprospecting study that aims to isolate and identify protease inhibitors from the cnidarian Actinia tenebrosa. The study isolated two Kunitz-type protease inhibitors with very similar sequences but quite divergent inhibitory potencies when assayed against bovine trypsin, chymostrypsin, and a selection of human sequence-related peptidases. Homology modeling and molecular dynamics simulations of these inhibitors in complex with their targets were carried out and, collectively, these methodologies enabled the definition of a versatile scaffold for inhibitor design. Thermal denaturation studies showed that the inhibitors were remarkably robust. To gain a fine-grained map of the residues responsible for this stability, we conducted in silico alanine scanning and quantified individual residue contributions to the inhibitor’s stability. Sequences of these inhibitors were then used to search for Kunitz homologs in an A. tenebrosa transcriptome library, resulting in the discovery of a further 14 related sequences. Consensus analysis of these variants identified a rich molecular diversity of Kunitz domains and expanded the palette of potential residue substitutions for rational inhibitor design using this domain. MDPI 2019-12-12 /pmc/articles/PMC6950308/ /pubmed/31842369 http://dx.doi.org/10.3390/md17120701 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Xingchen
Leahy, Darren
Van Haeften, Jessica
Hartfield, Perry
Prentis, Peter J.
van der Burg, Chloé A.
Surm, Joachim M.
Pavasovic, Ana
Madio, Bruno
Hamilton, Brett R.
King, Glenn F.
Undheim, Eivind A. B.
Brattsand, Maria
Harris, Jonathan M.
A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title_full A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title_fullStr A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title_full_unstemmed A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title_short A Versatile and Robust Serine Protease Inhibitor Scaffold from Actinia tenebrosa
title_sort versatile and robust serine protease inhibitor scaffold from actinia tenebrosa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6950308/
https://www.ncbi.nlm.nih.gov/pubmed/31842369
http://dx.doi.org/10.3390/md17120701
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