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Crosstalk between H2A variant-specific modifications impacts vital cell functions

View ORCID ProfileAnna Schmücker, View ORCID ProfileBingkun Lei, View ORCID ProfileZdravko J. Lorković, View ORCID ProfileMatías Capella, View ORCID ProfileSigurd Braun, Pierre Bourguet, View ORCID ProfileOlivier Mathieu, View ORCID ProfileKarl Mechtler, View ORCID ProfileFrédéric Berger
doi: https://doi.org/10.1101/2021.01.14.426637
Anna Schmücker
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
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Bingkun Lei
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
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Zdravko J. Lorković
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
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Matías Capella
2Biomedical Center, Department of Physiological Chemistry, Ludwig-Maximilians-University of Munich, Großhaderner Straße 9, 82152 Planegg-Martinsried, Germany
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Sigurd Braun
2Biomedical Center, Department of Physiological Chemistry, Ludwig-Maximilians-University of Munich, Großhaderner Straße 9, 82152 Planegg-Martinsried, Germany
3International Max Planck Research School for Molecular and Cellular Life Sciences, Am Klopferspitz 18, 82152 Planegg-Martinsried, Germany
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Pierre Bourguet
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
4CNRS, Université Clermont Auvergne, Inserm, Génétique Reproduction et Développement (GReD), F-63000 Clermont-Ferrand, France
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Olivier Mathieu
4CNRS, Université Clermont Auvergne, Inserm, Génétique Reproduction et Développement (GReD), F-63000 Clermont-Ferrand, France
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Karl Mechtler
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
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Frédéric Berger
1Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Vienna BioCenter (VBC), Dr. Bohr-Gasse 3, 1030 Vienna, Austria
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  • For correspondence: Frederic.berger@gmi.oeaw.ac.at
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Abstract

Histone variants are distinguished by specific substitutions and motifs that might be subject to post-translational modifications (PTMs). Compared with the high conservation of H3 variants, the N- and C-terminal tails of H2A variants are more divergent and are potential substrates for a more complex array of PTMs, which have remained largely unexplored. We used mass spectrometry to inventory the PTMs of the two heterochromatin-enriched variants H2A.W.6 and H2A.W.7 of Arabidopsis, which harbor the C-terminal motif KSPK. This motif is also found in macroH2A variants in animals and confers specific properties to the nucleosome. We showed that H2A.W.6 is phosphorylated by the cell cycle-dependent kinase CDKA specifically at KSPK. In contrast, this modification is absent on H2A.W.7, which also harbors the SQ motif associated with the variant H2A.X. Phosphorylation of the SQ motif is critical for the DNA damage response but is suppressed in H2A.W.7 by phosphorylation of KSPK. To identify factors involved in this suppression mechanism, we performed a synthetic screen in fission yeast expressing a mimic of the Arabidopsis H2A.W.7. Among those factors was the BRCT-domain protein Mdb1. We showed that phosphorylation of KSPK prevents binding of the BRCT-domain protein Mdb1 to phosphorylated SQ and as a result hampers response to DNA damage. Hence, cross-talks between motif-specific PTMs interfere with the vital functions of H2A variants. Such interference could be responsible for the mutual exclusion of specific motifs between distinct H2A variants. We conclude that sequence innovations in H2A variants have potentiated the acquisition of many specific PTMs with still unknown functions. These add a layer of complexity to the nucleosome properties and their impact in chromatin regulation.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • This revision is posted to fix an accidental overlay between FigS1 and FigS2.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted January 18, 2021.
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Crosstalk between H2A variant-specific modifications impacts vital cell functions
Anna Schmücker, Bingkun Lei, Zdravko J. Lorković, Matías Capella, Sigurd Braun, Pierre Bourguet, Olivier Mathieu, Karl Mechtler, Frédéric Berger
bioRxiv 2021.01.14.426637; doi: https://doi.org/10.1101/2021.01.14.426637
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Crosstalk between H2A variant-specific modifications impacts vital cell functions
Anna Schmücker, Bingkun Lei, Zdravko J. Lorković, Matías Capella, Sigurd Braun, Pierre Bourguet, Olivier Mathieu, Karl Mechtler, Frédéric Berger
bioRxiv 2021.01.14.426637; doi: https://doi.org/10.1101/2021.01.14.426637

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