Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation

A short isoform of the Tet1 enzyme (Tet1s) that oxidizes the DNA 5-methylcytosine (5mC) mark is overexpressed in tumors. Here the authors show Tet1s, but not full length Tet1, changes localization over the cell cycle upon ubiquitination and Uhrf1 interaction and is targeted to heterochromatin during...

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Main Authors: María Arroyo, Florian D. Hastert, Andreas Zhadan, Florian Schelter, Susanne Zimbelmann, Cathia Rausch, Anne K. Ludwig, Thomas Carell, M. Cristina Cardoso
Format: Article
Language:English
Published: Nature Portfolio 2022-09-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-32799-8
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author María Arroyo
Florian D. Hastert
Andreas Zhadan
Florian Schelter
Susanne Zimbelmann
Cathia Rausch
Anne K. Ludwig
Thomas Carell
M. Cristina Cardoso
author_facet María Arroyo
Florian D. Hastert
Andreas Zhadan
Florian Schelter
Susanne Zimbelmann
Cathia Rausch
Anne K. Ludwig
Thomas Carell
M. Cristina Cardoso
author_sort María Arroyo
collection DOAJ
description A short isoform of the Tet1 enzyme (Tet1s) that oxidizes the DNA 5-methylcytosine (5mC) mark is overexpressed in tumors. Here the authors show Tet1s, but not full length Tet1, changes localization over the cell cycle upon ubiquitination and Uhrf1 interaction and is targeted to heterochromatin during S-phase. This leads to 5mC oxidation and loss of DNA methylation in heterochromatin.
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spelling doaj.art-4bd2bce040994572835707652c0ebd762022-12-22T04:24:01ZengNature PortfolioNature Communications2041-17232022-09-0113112810.1038/s41467-022-32799-8Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidationMaría Arroyo0Florian D. Hastert1Andreas Zhadan2Florian Schelter3Susanne Zimbelmann4Cathia Rausch5Anne K. Ludwig6Thomas Carell7M. Cristina Cardoso8Cell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtDepartment of Chemistry, Ludwig Maximilians UniversityCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtDepartment of Chemistry, Ludwig Maximilians UniversityCell Biology and Epigenetics, Department of Biology, Technical University of DarmstadtA short isoform of the Tet1 enzyme (Tet1s) that oxidizes the DNA 5-methylcytosine (5mC) mark is overexpressed in tumors. Here the authors show Tet1s, but not full length Tet1, changes localization over the cell cycle upon ubiquitination and Uhrf1 interaction and is targeted to heterochromatin during S-phase. This leads to 5mC oxidation and loss of DNA methylation in heterochromatin.https://doi.org/10.1038/s41467-022-32799-8
spellingShingle María Arroyo
Florian D. Hastert
Andreas Zhadan
Florian Schelter
Susanne Zimbelmann
Cathia Rausch
Anne K. Ludwig
Thomas Carell
M. Cristina Cardoso
Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
Nature Communications
title Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
title_full Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
title_fullStr Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
title_full_unstemmed Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
title_short Isoform-specific and ubiquitination dependent recruitment of Tet1 to replicating heterochromatin modulates methylcytosine oxidation
title_sort isoform specific and ubiquitination dependent recruitment of tet1 to replicating heterochromatin modulates methylcytosine oxidation
url https://doi.org/10.1038/s41467-022-32799-8
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