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CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I

Meiosis generates four genetically distinct haploid gametes over the course of two reductional cell divisions. Meiotic divisions are characterized by the coordinated deposition and removal of various epigenetic marks. Here we propose that nuclear respiratory factor 1 (NRF1) regulates transcription o...

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Autores principales: Palmer, Nathan, Talib, S. Zakiah A., Ratnacaram, Chandrahas Koumar, Low, Diana, Bisteau, Xavier, Lee, Joanna Hui Si, Pfeiffenberger, Elisabeth, Wollmann, Heike, Tan, Joel Heng Loong, Wee, Sheena, Sobota, Radoslaw, Gunaratne, Jayantha, Messerschmidt, Daniel M., Guccione, Ernesto, Kaldis, Philipp
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6719441/
https://www.ncbi.nlm.nih.gov/pubmed/31350280
http://dx.doi.org/10.1083/jcb.201903125
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author Palmer, Nathan
Talib, S. Zakiah A.
Ratnacaram, Chandrahas Koumar
Low, Diana
Bisteau, Xavier
Lee, Joanna Hui Si
Pfeiffenberger, Elisabeth
Wollmann, Heike
Tan, Joel Heng Loong
Wee, Sheena
Sobota, Radoslaw
Gunaratne, Jayantha
Messerschmidt, Daniel M.
Guccione, Ernesto
Kaldis, Philipp
author_facet Palmer, Nathan
Talib, S. Zakiah A.
Ratnacaram, Chandrahas Koumar
Low, Diana
Bisteau, Xavier
Lee, Joanna Hui Si
Pfeiffenberger, Elisabeth
Wollmann, Heike
Tan, Joel Heng Loong
Wee, Sheena
Sobota, Radoslaw
Gunaratne, Jayantha
Messerschmidt, Daniel M.
Guccione, Ernesto
Kaldis, Philipp
author_sort Palmer, Nathan
collection PubMed
description Meiosis generates four genetically distinct haploid gametes over the course of two reductional cell divisions. Meiotic divisions are characterized by the coordinated deposition and removal of various epigenetic marks. Here we propose that nuclear respiratory factor 1 (NRF1) regulates transcription of euchromatic histone methyltransferase 1 (EHMT1) to ensure normal patterns of H3K9 methylation during meiotic prophase I. We demonstrate that cyclin-dependent kinase (CDK2) can bind to the promoters of a number of genes in male germ cells including that of Ehmt1 through interaction with the NRF1 transcription factor. Our data indicate that CDK2-mediated phosphorylation of NRF1 can occur at two distinct serine residues and negatively regulates NRF1 DNA binding activity in vitro. Furthermore, induced deletion of Cdk2 in spermatocytes results in increased expression of many NRF1 target genes including Ehmt1. We hypothesize that the regulation of NRF1 transcriptional activity by CDK2 may allow the modulation of Ehmt1 expression, therefore controlling the dynamic methylation of H3K9 during meiotic prophase.
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spelling pubmed-67194412019-09-17 CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I Palmer, Nathan Talib, S. Zakiah A. Ratnacaram, Chandrahas Koumar Low, Diana Bisteau, Xavier Lee, Joanna Hui Si Pfeiffenberger, Elisabeth Wollmann, Heike Tan, Joel Heng Loong Wee, Sheena Sobota, Radoslaw Gunaratne, Jayantha Messerschmidt, Daniel M. Guccione, Ernesto Kaldis, Philipp J Cell Biol Research Articles Meiosis generates four genetically distinct haploid gametes over the course of two reductional cell divisions. Meiotic divisions are characterized by the coordinated deposition and removal of various epigenetic marks. Here we propose that nuclear respiratory factor 1 (NRF1) regulates transcription of euchromatic histone methyltransferase 1 (EHMT1) to ensure normal patterns of H3K9 methylation during meiotic prophase I. We demonstrate that cyclin-dependent kinase (CDK2) can bind to the promoters of a number of genes in male germ cells including that of Ehmt1 through interaction with the NRF1 transcription factor. Our data indicate that CDK2-mediated phosphorylation of NRF1 can occur at two distinct serine residues and negatively regulates NRF1 DNA binding activity in vitro. Furthermore, induced deletion of Cdk2 in spermatocytes results in increased expression of many NRF1 target genes including Ehmt1. We hypothesize that the regulation of NRF1 transcriptional activity by CDK2 may allow the modulation of Ehmt1 expression, therefore controlling the dynamic methylation of H3K9 during meiotic prophase. Rockefeller University Press 2019-09-02 2019-07-26 /pmc/articles/PMC6719441/ /pubmed/31350280 http://dx.doi.org/10.1083/jcb.201903125 Text en © 2019 Palmer et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Palmer, Nathan
Talib, S. Zakiah A.
Ratnacaram, Chandrahas Koumar
Low, Diana
Bisteau, Xavier
Lee, Joanna Hui Si
Pfeiffenberger, Elisabeth
Wollmann, Heike
Tan, Joel Heng Loong
Wee, Sheena
Sobota, Radoslaw
Gunaratne, Jayantha
Messerschmidt, Daniel M.
Guccione, Ernesto
Kaldis, Philipp
CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title_full CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title_fullStr CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title_full_unstemmed CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title_short CDK2 regulates the NRF1/Ehmt1 axis during meiotic prophase I
title_sort cdk2 regulates the nrf1/ehmt1 axis during meiotic prophase i
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6719441/
https://www.ncbi.nlm.nih.gov/pubmed/31350280
http://dx.doi.org/10.1083/jcb.201903125
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