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The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors

Lysine acetylation has recently emerged as an important post-translational modification in diverse organisms, but relatively little is known about its roles in mammalian development and stem cells. Bromodomain- and PHD finger-containing protein 1 (BRPF1) is a multidomain histone binder and a master...

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Autores principales: You, Linya, Yan, Kezhi, Zhou, Jinfeng, Zhao, Hong, Bertos, Nicholas R., Park, Morag, Wang, Edwin, Yang, Xiang-Jiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4355587/
https://www.ncbi.nlm.nih.gov/pubmed/25757017
http://dx.doi.org/10.1371/journal.pgen.1005034
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author You, Linya
Yan, Kezhi
Zhou, Jinfeng
Zhao, Hong
Bertos, Nicholas R.
Park, Morag
Wang, Edwin
Yang, Xiang-Jiao
author_facet You, Linya
Yan, Kezhi
Zhou, Jinfeng
Zhao, Hong
Bertos, Nicholas R.
Park, Morag
Wang, Edwin
Yang, Xiang-Jiao
author_sort You, Linya
collection PubMed
description Lysine acetylation has recently emerged as an important post-translational modification in diverse organisms, but relatively little is known about its roles in mammalian development and stem cells. Bromodomain- and PHD finger-containing protein 1 (BRPF1) is a multidomain histone binder and a master activator of three lysine acetyltransferases, MOZ, MORF and HBO1, which are also known as KAT6A, KAT6B and KAT7, respectively. While the MOZ and MORF genes are rearranged in leukemia, the MORF gene is also mutated in prostate and other cancers and in four genetic disorders with intellectual disability. Here we show that forebrain-specific inactivation of the mouse Brpf1 gene causes hypoplasia in the dentate gyrus, including underdevelopment of the suprapyramidal blade and complete loss of the infrapyramidal blade. We trace the developmental origin to compromised Sox2(+) neural stem cells and Tbr2(+) intermediate neuronal progenitors. We further demonstrate that Brpf1 loss deregulates neuronal migration, cell cycle progression and transcriptional control, thereby causing abnormal morphogenesis of the hippocampus. These results link histone binding and acetylation control to hippocampus development and identify an important epigenetic regulator for patterning the dentate gyrus, a brain structure critical for learning, memory and adult neurogenesis.
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spelling pubmed-43555872015-03-17 The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors You, Linya Yan, Kezhi Zhou, Jinfeng Zhao, Hong Bertos, Nicholas R. Park, Morag Wang, Edwin Yang, Xiang-Jiao PLoS Genet Research Article Lysine acetylation has recently emerged as an important post-translational modification in diverse organisms, but relatively little is known about its roles in mammalian development and stem cells. Bromodomain- and PHD finger-containing protein 1 (BRPF1) is a multidomain histone binder and a master activator of three lysine acetyltransferases, MOZ, MORF and HBO1, which are also known as KAT6A, KAT6B and KAT7, respectively. While the MOZ and MORF genes are rearranged in leukemia, the MORF gene is also mutated in prostate and other cancers and in four genetic disorders with intellectual disability. Here we show that forebrain-specific inactivation of the mouse Brpf1 gene causes hypoplasia in the dentate gyrus, including underdevelopment of the suprapyramidal blade and complete loss of the infrapyramidal blade. We trace the developmental origin to compromised Sox2(+) neural stem cells and Tbr2(+) intermediate neuronal progenitors. We further demonstrate that Brpf1 loss deregulates neuronal migration, cell cycle progression and transcriptional control, thereby causing abnormal morphogenesis of the hippocampus. These results link histone binding and acetylation control to hippocampus development and identify an important epigenetic regulator for patterning the dentate gyrus, a brain structure critical for learning, memory and adult neurogenesis. Public Library of Science 2015-03-10 /pmc/articles/PMC4355587/ /pubmed/25757017 http://dx.doi.org/10.1371/journal.pgen.1005034 Text en © 2015 You 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
You, Linya
Yan, Kezhi
Zhou, Jinfeng
Zhao, Hong
Bertos, Nicholas R.
Park, Morag
Wang, Edwin
Yang, Xiang-Jiao
The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title_full The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title_fullStr The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title_full_unstemmed The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title_short The Lysine Acetyltransferase Activator Brpf1 Governs Dentate Gyrus Development through Neural Stem Cells and Progenitors
title_sort lysine acetyltransferase activator brpf1 governs dentate gyrus development through neural stem cells and progenitors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4355587/
https://www.ncbi.nlm.nih.gov/pubmed/25757017
http://dx.doi.org/10.1371/journal.pgen.1005034
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