MTHFD1 controls DNA methylation in Arabidopsis

DNA methylation contributes to transcriptional silencing. Here, Groth et al.show that mutant plants defective in MTHFD1, an enzyme involved in folate metabolism, have a DNA hypomethylation phenotype highlighting the link between one-carbon metabolism and DNA methylation, which is mediated by SAM as...

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Autores principales: Martin Groth, Guillaume Moissiard, Markus Wirtz, Haifeng Wang, Carolina Garcia-Salinas, Perla A. Ramos-Parra, Sylvain Bischof, Suhua Feng, Shawn J. Cokus, Amala John, Danielle C. Smith, Jixian Zhai, Christopher J. Hale, Jeff A. Long, Ruediger Hell, Rocío I. Díaz de la Garza, Steven E. Jacobsen
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/ce40b8d8684f4a36a5143251814e191e
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spelling oai:doaj.org-article:ce40b8d8684f4a36a5143251814e191e2021-12-02T15:35:44ZMTHFD1 controls DNA methylation in Arabidopsis10.1038/ncomms116402041-1723https://doaj.org/article/ce40b8d8684f4a36a5143251814e191e2016-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms11640https://doaj.org/toc/2041-1723DNA methylation contributes to transcriptional silencing. Here, Groth et al.show that mutant plants defective in MTHFD1, an enzyme involved in folate metabolism, have a DNA hypomethylation phenotype highlighting the link between one-carbon metabolism and DNA methylation, which is mediated by SAM as a common methyl donor.Martin GrothGuillaume MoissiardMarkus WirtzHaifeng WangCarolina Garcia-SalinasPerla A. Ramos-ParraSylvain BischofSuhua FengShawn J. CokusAmala JohnDanielle C. SmithJixian ZhaiChristopher J. HaleJeff A. LongRuediger HellRocío I. Díaz de la GarzaSteven E. JacobsenNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-13 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Martin Groth
Guillaume Moissiard
Markus Wirtz
Haifeng Wang
Carolina Garcia-Salinas
Perla A. Ramos-Parra
Sylvain Bischof
Suhua Feng
Shawn J. Cokus
Amala John
Danielle C. Smith
Jixian Zhai
Christopher J. Hale
Jeff A. Long
Ruediger Hell
Rocío I. Díaz de la Garza
Steven E. Jacobsen
MTHFD1 controls DNA methylation in Arabidopsis
description DNA methylation contributes to transcriptional silencing. Here, Groth et al.show that mutant plants defective in MTHFD1, an enzyme involved in folate metabolism, have a DNA hypomethylation phenotype highlighting the link between one-carbon metabolism and DNA methylation, which is mediated by SAM as a common methyl donor.
format article
author Martin Groth
Guillaume Moissiard
Markus Wirtz
Haifeng Wang
Carolina Garcia-Salinas
Perla A. Ramos-Parra
Sylvain Bischof
Suhua Feng
Shawn J. Cokus
Amala John
Danielle C. Smith
Jixian Zhai
Christopher J. Hale
Jeff A. Long
Ruediger Hell
Rocío I. Díaz de la Garza
Steven E. Jacobsen
author_facet Martin Groth
Guillaume Moissiard
Markus Wirtz
Haifeng Wang
Carolina Garcia-Salinas
Perla A. Ramos-Parra
Sylvain Bischof
Suhua Feng
Shawn J. Cokus
Amala John
Danielle C. Smith
Jixian Zhai
Christopher J. Hale
Jeff A. Long
Ruediger Hell
Rocío I. Díaz de la Garza
Steven E. Jacobsen
author_sort Martin Groth
title MTHFD1 controls DNA methylation in Arabidopsis
title_short MTHFD1 controls DNA methylation in Arabidopsis
title_full MTHFD1 controls DNA methylation in Arabidopsis
title_fullStr MTHFD1 controls DNA methylation in Arabidopsis
title_full_unstemmed MTHFD1 controls DNA methylation in Arabidopsis
title_sort mthfd1 controls dna methylation in arabidopsis
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/ce40b8d8684f4a36a5143251814e191e
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