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17 publication(s)
  • DUPOUY G., SINGH G., SCHMIDT-SPEICHER L., HOFFMANN E., BAUDREY S., AHRENS R., GUBER A., RYCKELYNCK M., HERZOG E., CHABOUTÉ M.E. and BERR A.

    Microfluidics to Follow Spatiotemporal Dynamics at the Nucleo-Cytoplasmic Interface During Plant Root Growth

    In: Baroux, C., Tatout, C. (eds) Methods for Plant Nucleus and Chromatin Studies, Humana, New york., 2025.

  • DUPOUY G., DONG Y., HERZOG E., CHABOUTÉ M.E. and BERR A.

    Nuclear envelope dynamics in connection to chromatin remodeling.

    Plant Journal, 963-981, 2024.

  • LI X., USLU V.V., YING C., HAN X., BERR A., ZHANG W. and DONG Y.

    Specific chromatin states and m6A modifications are associated with mRNA mobility in planta

    Horticulture Research, , 2024. | DOI : 10.1093/hr/uhae101DOI logo

  • DONG Y., USLU V.V., BERR A., SINGH G., PAPDI C., STEFFENS V., HEITZ T. and RYABOVA L.

    TOR represses stress responses through global regulation of H3K27 trimethylation in plants

    Journal of Experimental Botany, 74:1420-1431, 2023. | DOI : 10.1093/jxb/erac486DOI logo

  • FAL K., BERR A., LE MASON M., FAIGENBOIM A., PANO E., ISHKHNELI N., MOYAL N.L., VILLETTE C., TOMKOVA D., CHABOUTÉ M.E., WILLIAMS L.E. and CARLES C.

    Lysine 27 of histone H3.3 is a fine modulator of developmental gene expression and stands as an epigenetic checkpoint for lignin biosynthesis in Arabidopsis

    New Phytologist, , 2023.

  • BERR A. and CHABOUTÉ M.E.

    The art of painting chromosome loops

    Quantitative Plant Biology, , 2023. | DOI : 10.1017/qpb.2023.11DOI logo

  • SINGH G., BATZENSCHLAGER M., TOMKOVA D., HERZOG E., HOFFMANN E., HOULNÉ G., SCHMIT A.C., BERR A. and CHABOUTÉ M.E.

    GIP1 and GIP2 contribute to the maintenance of genome stability at the nuclear periphery

    Frontiers in Plant Science, 12:804928, 2022. | DOI : 10.3389/fpls.2021.804928DOI logo

  • FAL K., TOMKOVA D., VACHON G., CHABOUTÉ M.E., BERR A. and CARLES C.

    Chromatin Manipulation and Editing: Challenges, New Technologies and Their Use in Plants

    International Journal of Molecular Sciences, 22:512, 2021.

  • MAHJOUBI H., TAMARI Y., TAKEDA S., BOUCHABKÉ-COUSSA O., HANIN M., HERZOG E., SCHMIT A.C., CHABOUTÉ M.E. and EBEL C.

    The wheat TdRL1 is the functional homolog of the rice RSS1 and promotes plant salt stress tolerance.

    Plant Cell Reports, 1625-1637, 2018. | DOI : 10.1007/s00299-018-2333-2DOI logo

  • BATZENSCHLAGER M., SCHMIT A.C., HERZOG E., FUCHS J., SCHUBERT V., HOULNÉ G. and CHABOUTÉ M.E.

    MGO3 and GIP1 act synergistically for the maintenance of centromeric cohesion.

    Nucleus, 8:98-105, 2017. | DOI : 10.1080/19491034.2016.1276142DOI logo

  • CHABOUTÉ M.E. and BERR A.

    GIP contributions to the regulation of centromere at the interface between the nuclear envelope and the nucleoplasm.

    Frontiers in Plant Science, 7:118, 2016. | DOI : 10.3389/fpls.2016.00118DOI logo

  • BATZENSCHLAGER M., LERMONTOVA I., SCHUBERT V., FUCHS J., BERR A., KOINI M.A., HOULNÉ G., HERZOG E., RUTTEN T., ALIOUA A., FRANSZ P., SCHMIT A.C. and CHABOUTÉ M.E.

    Arabidopsis MZT1 homologs GIP1 and GIP2 are essential for centromere architecture

    Proceedings of the National Academy of Sciences of the United States of America, 112(28):8656-8660, 2015. | DOI : 10.1073/pnas.1506351112DOI logo

  • SCHMIT A.C., HERZOG E. and CHABOUTÉ M.E.

    GIP/MZT1 proteins : key players in centromere regulation

    Cell Cycle, 14(23):3665-3666, 2015. | DOI : 10.1080/15384101.2015.1112614DOI logo

  • BATZENSCHLAGER M., HERZOG E., HOULNÉ G., SCHMIT A.C. and CHABOUTÉ M.E.

    GIP/MZT1 proteins orchestrate nuclear shaping

    Frontiers in Plant Science, 5(Feb 7):29, 2014. | DOI : 10.3389/fpls.2014.00029DOI logo

  • HLEIBIEH K., HERZOG E., CHABOUTÉ M.E. and SCHMIT A.C.

    Microtubule nucleation and establishment of the mitotic spindle in vascular plant cells

    Plant Journal, 75:245-257, 2013. | DOI : 10.1111/tpj.12179DOI logo

  • BATZENSCHLAGER M., HLEIBIEH K., JANSKI N., HOULNÉ G., HERZOG E., EVRARD J.L., BAUMBERGER N., ERHARDT M., NOMINÉ Y., KIEFFER B., SCHMIT A.C. and CHABOUTÉ M.E.

    The GIP gamma-tubulin complex-associated proteins are involved in nuclear architecture in Arabidopsis thaliana.

    Frontiers in Plant Science, 4(480):doi:10.103389/fpls.2013.00480, 2013. | DOI : 10.3389/fpls.2013.00480DOI logo

  • JANSKI N., MASOUD K., BATZENSCHLAGER M., HERZOG E., EVRARD J.L., HOULNÉ G., BOURGE M., CHABOUTÉ M.E. and SCHMIT A.C.

    The GCP3-Interacting Proteins GIP1 and GIP2 Are Required for ( gamma )-Tubulin Complex Protein Localization, Spindle Integrity, and Chromosomal Stability.

    Plant Cell, 24:1171-1187, 2012. | DOI : 10.1105/tpc.111.094904DOI logo