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SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation

Sirtuin proteins regulate diverse cellular pathways that influence genomic stability, metabolism, and ageing(1,2). SIRT7 is a mammalian sirtuin whose biochemical activity, molecular targets, and physiologic functions have been unclear. Here we show that SIRT7 is an NAD(+)-dependent H3K18Ac (acetylat...

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Autores principales: Barber, Matthew F., Michishita-Kioi, Eriko, Xi, Yuanxin, Tasselli, Luisa, Kioi, Mitomu, Moqtaderi, Zarmik, Tennen, Ruth I., Paredes, Silvana, Young, Nicolas L., Chen, Kaifu, Struhl, Kevin, Garcia, Benjamin A., Gozani, Or, Li, Wei, Chua, Katrin F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3412143/
https://www.ncbi.nlm.nih.gov/pubmed/22722849
http://dx.doi.org/10.1038/nature11043
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author Barber, Matthew F.
Michishita-Kioi, Eriko
Xi, Yuanxin
Tasselli, Luisa
Kioi, Mitomu
Moqtaderi, Zarmik
Tennen, Ruth I.
Paredes, Silvana
Young, Nicolas L.
Chen, Kaifu
Struhl, Kevin
Garcia, Benjamin A.
Gozani, Or
Li, Wei
Chua, Katrin F.
author_facet Barber, Matthew F.
Michishita-Kioi, Eriko
Xi, Yuanxin
Tasselli, Luisa
Kioi, Mitomu
Moqtaderi, Zarmik
Tennen, Ruth I.
Paredes, Silvana
Young, Nicolas L.
Chen, Kaifu
Struhl, Kevin
Garcia, Benjamin A.
Gozani, Or
Li, Wei
Chua, Katrin F.
author_sort Barber, Matthew F.
collection PubMed
description Sirtuin proteins regulate diverse cellular pathways that influence genomic stability, metabolism, and ageing(1,2). SIRT7 is a mammalian sirtuin whose biochemical activity, molecular targets, and physiologic functions have been unclear. Here we show that SIRT7 is an NAD(+)-dependent H3K18Ac (acetylated lysine 18 of histone H3) deacetylase that stabilizes the transformed state of cancer cells. Genome-wide binding studies reveal that SIRT7 binds to promoters of a specific set of gene targets, where it deacetylates H3K18Ac and promotes transcriptional repression. The spectrum of SIRT7 target genes is defined in part by its interaction with the cancer-associated ETS transcription factor ELK4, and comprises numerous genes with links to tumour suppression. Notably, selective hypoacetylation of H3K18Ac has been linked to oncogenic transformation, and in patients is associated with aggressive tumour phenotypes and poor prognosis(3–6). We find that deacetylation of H3K18Ac by SIRT7 is necessary for maintaining essential features of human cancer cells, including anchorage-independent growth and escape from contact inhibition. Moreover, SIRT7 is necessary for a global hypoacetylation of H3K18Ac associated with cellular transformation by the viral oncoprotein E1A. Finally, SIRT7 depletion markedly reduces the tumourigenicity of human cancer cell xenografts in mice. Together, our work establishes SIRT7 as a highly selective H3K18Ac deacetylase and demonstrates a pivotal role for SIRT7 in chromatin regulation, cellular transformation programs, and tumour formation in vivo.
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spelling pubmed-34121432013-01-05 SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation Barber, Matthew F. Michishita-Kioi, Eriko Xi, Yuanxin Tasselli, Luisa Kioi, Mitomu Moqtaderi, Zarmik Tennen, Ruth I. Paredes, Silvana Young, Nicolas L. Chen, Kaifu Struhl, Kevin Garcia, Benjamin A. Gozani, Or Li, Wei Chua, Katrin F. Nature Article Sirtuin proteins regulate diverse cellular pathways that influence genomic stability, metabolism, and ageing(1,2). SIRT7 is a mammalian sirtuin whose biochemical activity, molecular targets, and physiologic functions have been unclear. Here we show that SIRT7 is an NAD(+)-dependent H3K18Ac (acetylated lysine 18 of histone H3) deacetylase that stabilizes the transformed state of cancer cells. Genome-wide binding studies reveal that SIRT7 binds to promoters of a specific set of gene targets, where it deacetylates H3K18Ac and promotes transcriptional repression. The spectrum of SIRT7 target genes is defined in part by its interaction with the cancer-associated ETS transcription factor ELK4, and comprises numerous genes with links to tumour suppression. Notably, selective hypoacetylation of H3K18Ac has been linked to oncogenic transformation, and in patients is associated with aggressive tumour phenotypes and poor prognosis(3–6). We find that deacetylation of H3K18Ac by SIRT7 is necessary for maintaining essential features of human cancer cells, including anchorage-independent growth and escape from contact inhibition. Moreover, SIRT7 is necessary for a global hypoacetylation of H3K18Ac associated with cellular transformation by the viral oncoprotein E1A. Finally, SIRT7 depletion markedly reduces the tumourigenicity of human cancer cell xenografts in mice. Together, our work establishes SIRT7 as a highly selective H3K18Ac deacetylase and demonstrates a pivotal role for SIRT7 in chromatin regulation, cellular transformation programs, and tumour formation in vivo. 2012-07-05 /pmc/articles/PMC3412143/ /pubmed/22722849 http://dx.doi.org/10.1038/nature11043 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Barber, Matthew F.
Michishita-Kioi, Eriko
Xi, Yuanxin
Tasselli, Luisa
Kioi, Mitomu
Moqtaderi, Zarmik
Tennen, Ruth I.
Paredes, Silvana
Young, Nicolas L.
Chen, Kaifu
Struhl, Kevin
Garcia, Benjamin A.
Gozani, Or
Li, Wei
Chua, Katrin F.
SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title_full SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title_fullStr SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title_full_unstemmed SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title_short SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation
title_sort sirt7 links h3k18 deacetylation to maintenance of oncogenic transformation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3412143/
https://www.ncbi.nlm.nih.gov/pubmed/22722849
http://dx.doi.org/10.1038/nature11043
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