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A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1
Methyl-CpG-binding protein-2 (MeCP2) regulates gene expression by recruiting SWI/SNF DNA helicase/ATPase (ATRX) and Histone Deacetylase-1 (HDAC1) to methylated gene regions and modulates heterochromatin association by interacting with Heterochromatin protein-1. As MeCP2 contributes to tumor suppress...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Impact Journals LLC
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4633168/ https://www.ncbi.nlm.nih.gov/pubmed/26622943 |
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author | Pandey, Somnath Simmons, Glenn E. Malyarchuk, Svitlana Calhoun, Tara N. Pruitt, Kevin |
author_facet | Pandey, Somnath Simmons, Glenn E. Malyarchuk, Svitlana Calhoun, Tara N. Pruitt, Kevin |
author_sort | Pandey, Somnath |
collection | PubMed |
description | Methyl-CpG-binding protein-2 (MeCP2) regulates gene expression by recruiting SWI/SNF DNA helicase/ATPase (ATRX) and Histone Deacetylase-1 (HDAC1) to methylated gene regions and modulates heterochromatin association by interacting with Heterochromatin protein-1. As MeCP2 contributes to tumor suppressor gene silencing and its mutation causes Rett Syndrome, we investigated how novel post-translational-modification contributes to its function. Herein we report that upon pharmacological inhibition of SIRT1 in RKO colon and MCF-7 breast cancer cells, endogenous MeCP2 is acetylated at sites critical for binding to DNA and transcriptional regulators. We created an acetylation mimetic mutation in MeCP2 and found it to possess decreased binding to ATRX and HDAC1. Conditions inducing MeCP2 acetylation do not alter its promoter occupancy at a subset of target genes analyzed, but do cause decreased binding to ATRX and HDAC1. We also report here that a specific inhibitor of SIRT1, IV, can be used to selectively decrease H3K27me3 repressive marks on a subset of repressed target gene promoters analyzed. Lastly, we show that RKO cells over-expressing MeCP2 mutant show reduced proliferation compared to those over-expressing MeCP2-wildtype. Our study demonstrates the importance of acetylated lysine residues and suggests their key role in regulating MeCP2 function and its ability to bind transcriptional regulators. |
format | Online Article Text |
id | pubmed-4633168 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Impact Journals LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-46331682015-11-30 A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 Pandey, Somnath Simmons, Glenn E. Malyarchuk, Svitlana Calhoun, Tara N. Pruitt, Kevin Genes Cancer Research Paper Methyl-CpG-binding protein-2 (MeCP2) regulates gene expression by recruiting SWI/SNF DNA helicase/ATPase (ATRX) and Histone Deacetylase-1 (HDAC1) to methylated gene regions and modulates heterochromatin association by interacting with Heterochromatin protein-1. As MeCP2 contributes to tumor suppressor gene silencing and its mutation causes Rett Syndrome, we investigated how novel post-translational-modification contributes to its function. Herein we report that upon pharmacological inhibition of SIRT1 in RKO colon and MCF-7 breast cancer cells, endogenous MeCP2 is acetylated at sites critical for binding to DNA and transcriptional regulators. We created an acetylation mimetic mutation in MeCP2 and found it to possess decreased binding to ATRX and HDAC1. Conditions inducing MeCP2 acetylation do not alter its promoter occupancy at a subset of target genes analyzed, but do cause decreased binding to ATRX and HDAC1. We also report here that a specific inhibitor of SIRT1, IV, can be used to selectively decrease H3K27me3 repressive marks on a subset of repressed target gene promoters analyzed. Lastly, we show that RKO cells over-expressing MeCP2 mutant show reduced proliferation compared to those over-expressing MeCP2-wildtype. Our study demonstrates the importance of acetylated lysine residues and suggests their key role in regulating MeCP2 function and its ability to bind transcriptional regulators. Impact Journals LLC 2015-09 /pmc/articles/PMC4633168/ /pubmed/26622943 Text en Copyright: © 2015 Pandey et al. http://creativecommons.org/licenses/by/2.5/ 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 credited. |
spellingShingle | Research Paper Pandey, Somnath Simmons, Glenn E. Malyarchuk, Svitlana Calhoun, Tara N. Pruitt, Kevin A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title | A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title_full | A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title_fullStr | A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title_full_unstemmed | A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title_short | A novel MeCP2 acetylation site regulates interaction with ATRX and HDAC1 |
title_sort | novel mecp2 acetylation site regulates interaction with atrx and hdac1 |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4633168/ https://www.ncbi.nlm.nih.gov/pubmed/26622943 |
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