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Structure-Activity Relationship of Chlorotoxin-Like Peptides

Animal venom (e.g., scorpion) is a rich source of various protein and peptide toxins with diverse physio-/pharmaco-logical activities, which generally exert their action via target-specific modulation of different ion channel functions. Scorpion venoms are among the most widely-known source of pepti...

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Autores principales: Ali, Syed Abid, Alam, Mehtab, Abbasi, Atiya, Undheim, Eivind A. B., Fry, Bryan Grieg, Kalbacher, Hubert, Voelter, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4773789/
https://www.ncbi.nlm.nih.gov/pubmed/26848686
http://dx.doi.org/10.3390/toxins8020036
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author Ali, Syed Abid
Alam, Mehtab
Abbasi, Atiya
Undheim, Eivind A. B.
Fry, Bryan Grieg
Kalbacher, Hubert
Voelter, Wolfgang
author_facet Ali, Syed Abid
Alam, Mehtab
Abbasi, Atiya
Undheim, Eivind A. B.
Fry, Bryan Grieg
Kalbacher, Hubert
Voelter, Wolfgang
author_sort Ali, Syed Abid
collection PubMed
description Animal venom (e.g., scorpion) is a rich source of various protein and peptide toxins with diverse physio-/pharmaco-logical activities, which generally exert their action via target-specific modulation of different ion channel functions. Scorpion venoms are among the most widely-known source of peptidyl neurotoxins used for callipering different ion channels, such as; Na(+), K(+), Ca(+), Cl(−), etc. A new peptide of the chlorotoxin family (i.e., Bs-Tx7) has been isolated, sequenced and synthesized from scorpion Buthus sindicus (family Buthidae) venom. This peptide demonstrates 66% with chlorotoxin (ClTx) and 82% with CFTR channel inhibitor (GaTx1) sequence identities reported from Leiurus quinquestriatus hebraeus venom. The toxin has a molecular mass of 3821 Da and possesses four intra-chain disulphide bonds. Amino acid sequence analysis of Bs-Tx7 revealed the presence of a scissile peptide bond (i.e., Gly-Ile) for human MMP2, whose activity is increased in the case of tumour malignancy. The effect of hMMP2 on Bs-Tx7, or vice versa, observed using the FRET peptide substrate with methoxycoumarin (Mca)/dinitrophenyl (Dnp) as fluorophore/quencher, designed and synthesized to obtain the lowest Km value for this substrate, showed approximately a 60% increase in the activity of hMMP2 upon incubation of Bs-Tx7 with the enzyme at a micromolar concentration (4 µM), indicating the importance of this toxin in diseases associated with decreased MMP2 activity.
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spelling pubmed-47737892016-03-09 Structure-Activity Relationship of Chlorotoxin-Like Peptides Ali, Syed Abid Alam, Mehtab Abbasi, Atiya Undheim, Eivind A. B. Fry, Bryan Grieg Kalbacher, Hubert Voelter, Wolfgang Toxins (Basel) Article Animal venom (e.g., scorpion) is a rich source of various protein and peptide toxins with diverse physio-/pharmaco-logical activities, which generally exert their action via target-specific modulation of different ion channel functions. Scorpion venoms are among the most widely-known source of peptidyl neurotoxins used for callipering different ion channels, such as; Na(+), K(+), Ca(+), Cl(−), etc. A new peptide of the chlorotoxin family (i.e., Bs-Tx7) has been isolated, sequenced and synthesized from scorpion Buthus sindicus (family Buthidae) venom. This peptide demonstrates 66% with chlorotoxin (ClTx) and 82% with CFTR channel inhibitor (GaTx1) sequence identities reported from Leiurus quinquestriatus hebraeus venom. The toxin has a molecular mass of 3821 Da and possesses four intra-chain disulphide bonds. Amino acid sequence analysis of Bs-Tx7 revealed the presence of a scissile peptide bond (i.e., Gly-Ile) for human MMP2, whose activity is increased in the case of tumour malignancy. The effect of hMMP2 on Bs-Tx7, or vice versa, observed using the FRET peptide substrate with methoxycoumarin (Mca)/dinitrophenyl (Dnp) as fluorophore/quencher, designed and synthesized to obtain the lowest Km value for this substrate, showed approximately a 60% increase in the activity of hMMP2 upon incubation of Bs-Tx7 with the enzyme at a micromolar concentration (4 µM), indicating the importance of this toxin in diseases associated with decreased MMP2 activity. MDPI 2016-02-02 /pmc/articles/PMC4773789/ /pubmed/26848686 http://dx.doi.org/10.3390/toxins8020036 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ali, Syed Abid
Alam, Mehtab
Abbasi, Atiya
Undheim, Eivind A. B.
Fry, Bryan Grieg
Kalbacher, Hubert
Voelter, Wolfgang
Structure-Activity Relationship of Chlorotoxin-Like Peptides
title Structure-Activity Relationship of Chlorotoxin-Like Peptides
title_full Structure-Activity Relationship of Chlorotoxin-Like Peptides
title_fullStr Structure-Activity Relationship of Chlorotoxin-Like Peptides
title_full_unstemmed Structure-Activity Relationship of Chlorotoxin-Like Peptides
title_short Structure-Activity Relationship of Chlorotoxin-Like Peptides
title_sort structure-activity relationship of chlorotoxin-like peptides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4773789/
https://www.ncbi.nlm.nih.gov/pubmed/26848686
http://dx.doi.org/10.3390/toxins8020036
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