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An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing

Adenine N6 methylation in DNA (6mA) is widespread among bacteria and phage and is detected in mammalian genomes, where its function is largely unexplored. Here we show that 6mA deposition and removal are catalyzed by the Mettl4 methyltransferase and Alkbh4 dioxygenase, respectively, and that 6mA acc...

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Autores principales: Kweon, Soo-Mi, Chen, Yibu, Moon, Eugene, Kvederaviciutė, Kotryna, Klimasauskas, Saulius, Feldman, Douglas E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6591016/
https://www.ncbi.nlm.nih.gov/pubmed/30982744
http://dx.doi.org/10.1016/j.molcel.2019.03.018
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author Kweon, Soo-Mi
Chen, Yibu
Moon, Eugene
Kvederaviciutė, Kotryna
Klimasauskas, Saulius
Feldman, Douglas E.
author_facet Kweon, Soo-Mi
Chen, Yibu
Moon, Eugene
Kvederaviciutė, Kotryna
Klimasauskas, Saulius
Feldman, Douglas E.
author_sort Kweon, Soo-Mi
collection PubMed
description Adenine N6 methylation in DNA (6mA) is widespread among bacteria and phage and is detected in mammalian genomes, where its function is largely unexplored. Here we show that 6mA deposition and removal are catalyzed by the Mettl4 methyltransferase and Alkbh4 dioxygenase, respectively, and that 6mA accumulation in genic elements corresponds with transcriptional silencing. Inactivation of murine Mettl4 depletes 6mA and causes sublethality and craniofacial dysmorphism in incross progeny. We identify distinct 6mA sensor domains of prokaryotic origin within the MPND deubiquitinase and ASXL1, a component of the Polycomb repressive deubiquitinase (PR-DUB) complex, both of which act to remove monoubiquitin from histone H2A (H2A-K119Ub), a repressive mark. Deposition of 6mA by Mettl4 triggers the proteolytic destruction of both sensor proteins, preserving genome-wide H2A-K119Ub levels. Expression of the bacterial 6mA methyltransferase Dam, in contrast, fails to destroy either sensor. These findings uncover a native, adversarial 6mA network architecture that preserves Polycomb silencing.
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spelling pubmed-65910162019-08-20 An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing Kweon, Soo-Mi Chen, Yibu Moon, Eugene Kvederaviciutė, Kotryna Klimasauskas, Saulius Feldman, Douglas E. Mol Cell Article Adenine N6 methylation in DNA (6mA) is widespread among bacteria and phage and is detected in mammalian genomes, where its function is largely unexplored. Here we show that 6mA deposition and removal are catalyzed by the Mettl4 methyltransferase and Alkbh4 dioxygenase, respectively, and that 6mA accumulation in genic elements corresponds with transcriptional silencing. Inactivation of murine Mettl4 depletes 6mA and causes sublethality and craniofacial dysmorphism in incross progeny. We identify distinct 6mA sensor domains of prokaryotic origin within the MPND deubiquitinase and ASXL1, a component of the Polycomb repressive deubiquitinase (PR-DUB) complex, both of which act to remove monoubiquitin from histone H2A (H2A-K119Ub), a repressive mark. Deposition of 6mA by Mettl4 triggers the proteolytic destruction of both sensor proteins, preserving genome-wide H2A-K119Ub levels. Expression of the bacterial 6mA methyltransferase Dam, in contrast, fails to destroy either sensor. These findings uncover a native, adversarial 6mA network architecture that preserves Polycomb silencing. Cell Press 2019-06-20 /pmc/articles/PMC6591016/ /pubmed/30982744 http://dx.doi.org/10.1016/j.molcel.2019.03.018 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Kweon, Soo-Mi
Chen, Yibu
Moon, Eugene
Kvederaviciutė, Kotryna
Klimasauskas, Saulius
Feldman, Douglas E.
An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title_full An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title_fullStr An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title_full_unstemmed An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title_short An Adversarial DNA N(6)-Methyladenine-Sensor Network Preserves Polycomb Silencing
title_sort adversarial dna n(6)-methyladenine-sensor network preserves polycomb silencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6591016/
https://www.ncbi.nlm.nih.gov/pubmed/30982744
http://dx.doi.org/10.1016/j.molcel.2019.03.018
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