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A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription

Rediscovered as a potential eukaryotic epigenetic mark, DNA N(6)-adenine methylation (6mA) varies across species in abundance and its relationships with transcription. Here we characterize AMT1—representing a distinct MT-A70 family methyltransferase—in the ciliate Tetrahymena thermophila. AMT1 loss-...

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Autores principales: Wang, Yuanyuan, Sheng, Yalan, Liu, Yongqiang, Zhang, Wenxin, Cheng, Ting, Duan, Lili, Pan, Bo, Qiao, Yu, Liu, Yifan, Gao, Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7145601/
https://www.ncbi.nlm.nih.gov/pubmed/31722409
http://dx.doi.org/10.1093/nar/gkz1053
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author Wang, Yuanyuan
Sheng, Yalan
Liu, Yongqiang
Zhang, Wenxin
Cheng, Ting
Duan, Lili
Pan, Bo
Qiao, Yu
Liu, Yifan
Gao, Shan
author_facet Wang, Yuanyuan
Sheng, Yalan
Liu, Yongqiang
Zhang, Wenxin
Cheng, Ting
Duan, Lili
Pan, Bo
Qiao, Yu
Liu, Yifan
Gao, Shan
author_sort Wang, Yuanyuan
collection PubMed
description Rediscovered as a potential eukaryotic epigenetic mark, DNA N(6)-adenine methylation (6mA) varies across species in abundance and its relationships with transcription. Here we characterize AMT1—representing a distinct MT-A70 family methyltransferase—in the ciliate Tetrahymena thermophila. AMT1 loss-of-function leads to severe defects in growth and development. Single Molecule, Real-Time (SMRT) sequencing reveals that AMT1 is required for the bulk of 6mA and all symmetric methylation at the ApT dinucleotides. The detection of hemi-methylated ApT sites suggests a semi-conservative mechanism for maintaining symmetric methylation. AMT1 affects expression of many genes; in particular, RAB46, encoding a Rab family GTPase involved in contractile vacuole function, is likely a direct target. The distribution of 6mA resembles H3K4 methylation and H2A.Z, two conserved epigenetic marks associated with RNA polymerase II transcription. Furthermore, strong 6mA and nucleosome positioning in wild-type cells is attenuated in ΔAMT1 cells. Our results support that AMT1-catalyzed 6mA is an integral part of the transcription-associated epigenetic landscape. AMT1 homologues are generally found in protists and basal fungi featuring ApT hyper-methylation associated with transcription, which are missing in animals, plants, and true fungi. This dichotomy of 6mA functions and the underlying molecular mechanisms may have implications in eukaryotic diversification.
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spelling pubmed-71456012020-04-13 A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription Wang, Yuanyuan Sheng, Yalan Liu, Yongqiang Zhang, Wenxin Cheng, Ting Duan, Lili Pan, Bo Qiao, Yu Liu, Yifan Gao, Shan Nucleic Acids Res Molecular Biology Rediscovered as a potential eukaryotic epigenetic mark, DNA N(6)-adenine methylation (6mA) varies across species in abundance and its relationships with transcription. Here we characterize AMT1—representing a distinct MT-A70 family methyltransferase—in the ciliate Tetrahymena thermophila. AMT1 loss-of-function leads to severe defects in growth and development. Single Molecule, Real-Time (SMRT) sequencing reveals that AMT1 is required for the bulk of 6mA and all symmetric methylation at the ApT dinucleotides. The detection of hemi-methylated ApT sites suggests a semi-conservative mechanism for maintaining symmetric methylation. AMT1 affects expression of many genes; in particular, RAB46, encoding a Rab family GTPase involved in contractile vacuole function, is likely a direct target. The distribution of 6mA resembles H3K4 methylation and H2A.Z, two conserved epigenetic marks associated with RNA polymerase II transcription. Furthermore, strong 6mA and nucleosome positioning in wild-type cells is attenuated in ΔAMT1 cells. Our results support that AMT1-catalyzed 6mA is an integral part of the transcription-associated epigenetic landscape. AMT1 homologues are generally found in protists and basal fungi featuring ApT hyper-methylation associated with transcription, which are missing in animals, plants, and true fungi. This dichotomy of 6mA functions and the underlying molecular mechanisms may have implications in eukaryotic diversification. Oxford University Press 2019-12-16 2019-11-13 /pmc/articles/PMC7145601/ /pubmed/31722409 http://dx.doi.org/10.1093/nar/gkz1053 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Molecular Biology
Wang, Yuanyuan
Sheng, Yalan
Liu, Yongqiang
Zhang, Wenxin
Cheng, Ting
Duan, Lili
Pan, Bo
Qiao, Yu
Liu, Yifan
Gao, Shan
A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title_full A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title_fullStr A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title_full_unstemmed A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title_short A distinct class of eukaryotic MT-A70 methyltransferases maintain symmetric DNA N(6)-adenine methylation at the ApT dinucleotides as an epigenetic mark associated with transcription
title_sort distinct class of eukaryotic mt-a70 methyltransferases maintain symmetric dna n(6)-adenine methylation at the apt dinucleotides as an epigenetic mark associated with transcription
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7145601/
https://www.ncbi.nlm.nih.gov/pubmed/31722409
http://dx.doi.org/10.1093/nar/gkz1053
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