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Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain

Histone deacetylases (HDAC’s) became increasingly important targets for therapy of various diseases, resulting in a pressing need to develop HDAC class- and isoform-selective inhibitors. Class IIa deacetylases possess only minimal deacetylase activity against acetylated histones, but have several ot...

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Autores principales: Bonomi, Robin, Mukhopadhyay, Uday, Shavrin, Aleksandr, Yeh, Hsien-Hsien, Majhi, Anjoy, Dewage, Sajeewa W., Najjar, Amer, Lu, Xin, Cisneros, G. Andrés, Tong, William P., Alauddin, Mian M., Liu, Ren-Shuan, Mangner, Thomas J., Turkman, Nashaat, Gelovani, Juri G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4526562/
https://www.ncbi.nlm.nih.gov/pubmed/26244761
http://dx.doi.org/10.1371/journal.pone.0133512
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author Bonomi, Robin
Mukhopadhyay, Uday
Shavrin, Aleksandr
Yeh, Hsien-Hsien
Majhi, Anjoy
Dewage, Sajeewa W.
Najjar, Amer
Lu, Xin
Cisneros, G. Andrés
Tong, William P.
Alauddin, Mian M.
Liu, Ren-Shuan
Mangner, Thomas J.
Turkman, Nashaat
Gelovani, Juri G.
author_facet Bonomi, Robin
Mukhopadhyay, Uday
Shavrin, Aleksandr
Yeh, Hsien-Hsien
Majhi, Anjoy
Dewage, Sajeewa W.
Najjar, Amer
Lu, Xin
Cisneros, G. Andrés
Tong, William P.
Alauddin, Mian M.
Liu, Ren-Shuan
Mangner, Thomas J.
Turkman, Nashaat
Gelovani, Juri G.
author_sort Bonomi, Robin
collection PubMed
description Histone deacetylases (HDAC’s) became increasingly important targets for therapy of various diseases, resulting in a pressing need to develop HDAC class- and isoform-selective inhibitors. Class IIa deacetylases possess only minimal deacetylase activity against acetylated histones, but have several other client proteins as substrates through which they participate in epigenetic regulation. Herein, we report the radiosyntheses of the second generation of HDAC class IIa–specific radiotracers: 6-(di-fluoroacetamido)-1-hexanoicanilide (DFAHA) and 6-(tri-fluoroacetamido)-1-hexanoicanilide ([(18)F]-TFAHA). The selectivity of these radiotracer substrates to HDAC class IIa enzymes was assessed in vitro, in a panel of recombinant HDACs, and in vivo using PET/CT imaging in rats. [(18)F]TFAHA showed significantly higher selectivity for HDAC class IIa enzymes, as compared to [(18)F]DFAHA and previously reported [(18)F]FAHA. PET imaging with [(18)F]TFAHA can be used to visualize and quantify spatial distribution and magnitude of HDAC class IIa expression-activity in different organs and tissues in vivo. Furthermore, PET imaging with [(18)F]TFAHA may advance the understanding of HDACs class IIa mediated epigenetic regulation of normal and pathophysiological processes, and facilitate the development of novel HDAC class IIa-specific inhibitors for therapy of different diseases.
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spelling pubmed-45265622015-08-12 Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain Bonomi, Robin Mukhopadhyay, Uday Shavrin, Aleksandr Yeh, Hsien-Hsien Majhi, Anjoy Dewage, Sajeewa W. Najjar, Amer Lu, Xin Cisneros, G. Andrés Tong, William P. Alauddin, Mian M. Liu, Ren-Shuan Mangner, Thomas J. Turkman, Nashaat Gelovani, Juri G. PLoS One Research Article Histone deacetylases (HDAC’s) became increasingly important targets for therapy of various diseases, resulting in a pressing need to develop HDAC class- and isoform-selective inhibitors. Class IIa deacetylases possess only minimal deacetylase activity against acetylated histones, but have several other client proteins as substrates through which they participate in epigenetic regulation. Herein, we report the radiosyntheses of the second generation of HDAC class IIa–specific radiotracers: 6-(di-fluoroacetamido)-1-hexanoicanilide (DFAHA) and 6-(tri-fluoroacetamido)-1-hexanoicanilide ([(18)F]-TFAHA). The selectivity of these radiotracer substrates to HDAC class IIa enzymes was assessed in vitro, in a panel of recombinant HDACs, and in vivo using PET/CT imaging in rats. [(18)F]TFAHA showed significantly higher selectivity for HDAC class IIa enzymes, as compared to [(18)F]DFAHA and previously reported [(18)F]FAHA. PET imaging with [(18)F]TFAHA can be used to visualize and quantify spatial distribution and magnitude of HDAC class IIa expression-activity in different organs and tissues in vivo. Furthermore, PET imaging with [(18)F]TFAHA may advance the understanding of HDACs class IIa mediated epigenetic regulation of normal and pathophysiological processes, and facilitate the development of novel HDAC class IIa-specific inhibitors for therapy of different diseases. Public Library of Science 2015-08-05 /pmc/articles/PMC4526562/ /pubmed/26244761 http://dx.doi.org/10.1371/journal.pone.0133512 Text en © 2015 Bonomi 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
Bonomi, Robin
Mukhopadhyay, Uday
Shavrin, Aleksandr
Yeh, Hsien-Hsien
Majhi, Anjoy
Dewage, Sajeewa W.
Najjar, Amer
Lu, Xin
Cisneros, G. Andrés
Tong, William P.
Alauddin, Mian M.
Liu, Ren-Shuan
Mangner, Thomas J.
Turkman, Nashaat
Gelovani, Juri G.
Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title_full Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title_fullStr Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title_full_unstemmed Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title_short Novel Histone Deacetylase Class IIa Selective Substrate Radiotracers for PET Imaging of Epigenetic Regulation in the Brain
title_sort novel histone deacetylase class iia selective substrate radiotracers for pet imaging of epigenetic regulation in the brain
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4526562/
https://www.ncbi.nlm.nih.gov/pubmed/26244761
http://dx.doi.org/10.1371/journal.pone.0133512
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