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KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas

Lysine deacetylases (KDACs) are enzymes that reverse the post-translational modification of lysine acetylation. Recently, a series of N-acetylthioureas were synthesized and reported to enhance the activity of KDAC8 with a fluorogenic substrate. To determine if the activation was general, we synthesi...

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Autores principales: Toro, Tasha B., Pingali, Subramanya, Nguyen, Thao P., Garrett, Destane S., Dodson, Kyra A., Nichols, Kyara A., Haynes, Rashad A., Payton-Stewart, Florastina, Watt, Terry J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4706426/
https://www.ncbi.nlm.nih.gov/pubmed/26745872
http://dx.doi.org/10.1371/journal.pone.0146900
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author Toro, Tasha B.
Pingali, Subramanya
Nguyen, Thao P.
Garrett, Destane S.
Dodson, Kyra A.
Nichols, Kyara A.
Haynes, Rashad A.
Payton-Stewart, Florastina
Watt, Terry J.
author_facet Toro, Tasha B.
Pingali, Subramanya
Nguyen, Thao P.
Garrett, Destane S.
Dodson, Kyra A.
Nichols, Kyara A.
Haynes, Rashad A.
Payton-Stewart, Florastina
Watt, Terry J.
author_sort Toro, Tasha B.
collection PubMed
description Lysine deacetylases (KDACs) are enzymes that reverse the post-translational modification of lysine acetylation. Recently, a series of N-acetylthioureas were synthesized and reported to enhance the activity of KDAC8 with a fluorogenic substrate. To determine if the activation was general, we synthesized three of the most potent N-acetylthioureas and measured their effect with peptide substrates and the fluorogenic substrate under multiple reaction conditions and utilizing two enzyme purification approaches. No activation was observed for any of the three N-acetylthioureas under any assayed conditions. Further characterization of KDAC8 kinetics with the fluorogenic substrate yielded a k(cat)/K(M) of 164 ± 17 in the absence of any N-acetylthioureas. This catalytic efficiency is comparable to or higher than that previously reported when KDAC8 was activated by the N-acetylthioureas, suggesting that the previously reported activation effect may be due to use of an enzyme preparation that contains a large fraction of inactive enzyme. Further characterization with a less active preparation and additional substrates leads us to conclude that N-acetylthioureas are not true activators of KDAC8 and only increase activity if the enzyme preparation is below the maximal basal activity.
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spelling pubmed-47064262016-01-15 KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas Toro, Tasha B. Pingali, Subramanya Nguyen, Thao P. Garrett, Destane S. Dodson, Kyra A. Nichols, Kyara A. Haynes, Rashad A. Payton-Stewart, Florastina Watt, Terry J. PLoS One Research Article Lysine deacetylases (KDACs) are enzymes that reverse the post-translational modification of lysine acetylation. Recently, a series of N-acetylthioureas were synthesized and reported to enhance the activity of KDAC8 with a fluorogenic substrate. To determine if the activation was general, we synthesized three of the most potent N-acetylthioureas and measured their effect with peptide substrates and the fluorogenic substrate under multiple reaction conditions and utilizing two enzyme purification approaches. No activation was observed for any of the three N-acetylthioureas under any assayed conditions. Further characterization of KDAC8 kinetics with the fluorogenic substrate yielded a k(cat)/K(M) of 164 ± 17 in the absence of any N-acetylthioureas. This catalytic efficiency is comparable to or higher than that previously reported when KDAC8 was activated by the N-acetylthioureas, suggesting that the previously reported activation effect may be due to use of an enzyme preparation that contains a large fraction of inactive enzyme. Further characterization with a less active preparation and additional substrates leads us to conclude that N-acetylthioureas are not true activators of KDAC8 and only increase activity if the enzyme preparation is below the maximal basal activity. Public Library of Science 2016-01-08 /pmc/articles/PMC4706426/ /pubmed/26745872 http://dx.doi.org/10.1371/journal.pone.0146900 Text en © 2016 Toro 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Toro, Tasha B.
Pingali, Subramanya
Nguyen, Thao P.
Garrett, Destane S.
Dodson, Kyra A.
Nichols, Kyara A.
Haynes, Rashad A.
Payton-Stewart, Florastina
Watt, Terry J.
KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title_full KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title_fullStr KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title_full_unstemmed KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title_short KDAC8 with High Basal Velocity Is Not Activated by N-Acetylthioureas
title_sort kdac8 with high basal velocity is not activated by n-acetylthioureas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4706426/
https://www.ncbi.nlm.nih.gov/pubmed/26745872
http://dx.doi.org/10.1371/journal.pone.0146900
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