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Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice

Botulinum neurotoxins (BoNTs), etiological agents of the life threatening neuroparalytic disease botulism, are the most toxic substances currently known. The potential for the use as bioweapon makes the development of small-molecule inhibitor against these deadly toxins is a top priority. Currently,...

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Autores principales: Singh, Padma, Singh, Manglesh Kumar, Chaudhary, Dilip, Chauhan, Vinita, Bharadwaj, Pranay, Pandey, Apurva, Upadhyay, Nisha, Dhaked, Ram Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3469547/
https://www.ncbi.nlm.nih.gov/pubmed/23071727
http://dx.doi.org/10.1371/journal.pone.0047110
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author Singh, Padma
Singh, Manglesh Kumar
Chaudhary, Dilip
Chauhan, Vinita
Bharadwaj, Pranay
Pandey, Apurva
Upadhyay, Nisha
Dhaked, Ram Kumar
author_facet Singh, Padma
Singh, Manglesh Kumar
Chaudhary, Dilip
Chauhan, Vinita
Bharadwaj, Pranay
Pandey, Apurva
Upadhyay, Nisha
Dhaked, Ram Kumar
author_sort Singh, Padma
collection PubMed
description Botulinum neurotoxins (BoNTs), etiological agents of the life threatening neuroparalytic disease botulism, are the most toxic substances currently known. The potential for the use as bioweapon makes the development of small-molecule inhibitor against these deadly toxins is a top priority. Currently, there are no approved pharmacological treatments for BoNT intoxication. Although an effective vaccine/immunotherapy is available for immuno-prophylaxis but this cannot reverse the effects of toxin inside neurons. A small-molecule pharmacological intervention, especially one that would be effective against the light chain protease, would be highly desirable. Similarity search was carried out from ChemBridge and NSC libraries to the hit (7-(phenyl(8-quinolinylamino)methyl)-8-quinolinol; NSC 84096) to mine its analogs. Several hits obtained were screened for in silico inhibition using AutoDock 4.1 and 19 new molecules selected based on binding energy and Ki. Among these, eleven quinolinol derivatives potently inhibited in vitro endopeptidase activity of botulinum neurotoxin type A light chain (rBoNT/A-LC) on synaptosomes isolated from rat brain which simulate the in vivo system. Five of these inhibitor molecules exhibited IC(50) values ranging from 3.0 nM to 10.0 µM. NSC 84087 is the most potent inhibitor reported so far, found to be a promising lead for therapeutic development, as it exhibits no toxicity, and is able to protect animals from pre and post challenge of botulinum neurotoxin type A (BoNT/A).
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spelling pubmed-34695472012-10-15 Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice Singh, Padma Singh, Manglesh Kumar Chaudhary, Dilip Chauhan, Vinita Bharadwaj, Pranay Pandey, Apurva Upadhyay, Nisha Dhaked, Ram Kumar PLoS One Research Article Botulinum neurotoxins (BoNTs), etiological agents of the life threatening neuroparalytic disease botulism, are the most toxic substances currently known. The potential for the use as bioweapon makes the development of small-molecule inhibitor against these deadly toxins is a top priority. Currently, there are no approved pharmacological treatments for BoNT intoxication. Although an effective vaccine/immunotherapy is available for immuno-prophylaxis but this cannot reverse the effects of toxin inside neurons. A small-molecule pharmacological intervention, especially one that would be effective against the light chain protease, would be highly desirable. Similarity search was carried out from ChemBridge and NSC libraries to the hit (7-(phenyl(8-quinolinylamino)methyl)-8-quinolinol; NSC 84096) to mine its analogs. Several hits obtained were screened for in silico inhibition using AutoDock 4.1 and 19 new molecules selected based on binding energy and Ki. Among these, eleven quinolinol derivatives potently inhibited in vitro endopeptidase activity of botulinum neurotoxin type A light chain (rBoNT/A-LC) on synaptosomes isolated from rat brain which simulate the in vivo system. Five of these inhibitor molecules exhibited IC(50) values ranging from 3.0 nM to 10.0 µM. NSC 84087 is the most potent inhibitor reported so far, found to be a promising lead for therapeutic development, as it exhibits no toxicity, and is able to protect animals from pre and post challenge of botulinum neurotoxin type A (BoNT/A). Public Library of Science 2012-10-11 /pmc/articles/PMC3469547/ /pubmed/23071727 http://dx.doi.org/10.1371/journal.pone.0047110 Text en © 2012 Singh et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Singh, Padma
Singh, Manglesh Kumar
Chaudhary, Dilip
Chauhan, Vinita
Bharadwaj, Pranay
Pandey, Apurva
Upadhyay, Nisha
Dhaked, Ram Kumar
Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title_full Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title_fullStr Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title_full_unstemmed Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title_short Small-Molecule Quinolinol Inhibitor Identified Provides Protection against BoNT/A in Mice
title_sort small-molecule quinolinol inhibitor identified provides protection against bont/a in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3469547/
https://www.ncbi.nlm.nih.gov/pubmed/23071727
http://dx.doi.org/10.1371/journal.pone.0047110
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