Search Results - "Bourbousse, Clara"
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The CLASSY family controls tissue-specific DNA methylation patterns in Arabidopsis
Published in Nature communications (11-01-2022)“…DNA methylation shapes the epigenetic landscape of the genome, plays critical roles in regulating gene expression, and ensures transposon silencing. As is…”
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Plant Chromatin Catches the Sun
Published in Frontiers in plant science (24-01-2020)“…Plants use solar radiation as energy source for photosynthesis. They also take advantage of the information provided by the varying properties of sunlight,…”
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3
DET1-mediated degradation of a SAGA-like deubiquitination module controls H2Bub homeostasis
Published in eLife (07-09-2018)“…DE-ETIOLATED 1 (DET1) is an evolutionarily conserved component of the ubiquitination machinery that mediates the destabilization of key regulators of cell…”
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4
Light signaling controls nuclear architecture reorganization during seedling establishment
Published in Proceedings of the National Academy of Sciences - PNAS (26-05-2015)“…Significance Nuclear organization and genome expression are subject to massive reprogramming during most developmental transitions. The mechanisms triggering…”
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The UBP5 histone H2A deubiquitinase counteracts PRCs-mediated repression to regulate Arabidopsis development
Published in Nature communications (22-01-2024)“…Polycomb Repressive Complexes (PRCs) control gene expression through the incorporation of H2Aub and H3K27me3. In recent years, there is increasing evidence of…”
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Hypometabolism to survive the long polar night and subsequent successful return to light in the diatom Fragilariopsis cylindrus
Published in The New phytologist (01-03-2024)“…Summary Diatoms, the main eukaryotic phytoplankton of the polar marine regions, are essential for the maintenance of food chains specific to Arctic and…”
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Histone H2B monoubiquitination facilitates the rapid modulation of gene expression during Arabidopsis photomorphogenesis
Published in PLoS genetics (01-07-2012)“…Profiling of DNA and histone modifications has recently allowed the establishment of reference epigenomes from several model organisms. This identified a major…”
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Histone H1 protects telomeric repeats from H3K27me3 invasion in Arabidopsis
Published in Cell reports (Cambridge) (29-08-2023)“…While the pivotal role of linker histone H1 in shaping nucleosome organization is well established, its functional interplays with chromatin factors along the…”
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Identification of Features Regulating OST1 Kinase Activity and OST1 Function in Guard Cells
Published in Plant physiology (Bethesda) (01-08-2006)“…The phytohormone abscisic acid (ABA) mediates drought responses in plants and, in particular, triggers stomatal closure. Snf1-related kinase 2 (SnRK2) proteins…”
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10
Arabidopsis S2Lb links AtCOMPASS-like and SDG2 activity in H3K4me3 independently from histone H2B monoubiquitination
Published in Genome Biology (21-05-2019)“…The functional determinants of H3K4me3, their potential dependency on histone H2B monoubiquitination, and their contribution to defining transcriptional…”
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Genetic Dissection of Morphometric Traits Reveals That Phytochrome B Affects Nucleus Size and Heterochromatin Organization in Arabidopsis thaliana
Published in G3 (Bethesda, Md.) (01-08-2017)“…Microscopically visible chromatin is partitioned into two major components in nuclei. On one hand, chromocenters are conspicuous foci of highly condensed…”
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A Dynamic Signaling Path to Chromatin-Level Control of Plant Drought Response
Published in Molecular plant (04-03-2019)“…As sessile organisms, plants display a high capacity for phenotypic adaptations allowing them to meet the constraints of a changing local environment. This…”
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SOG1 activator and MYB3R repressors regulate a complex DNA damage network in Arabidopsis
Published in Proceedings of the National Academy of Sciences - PNAS (26-12-2018)“…To combat DNA damage, organisms mount a DNA damage response (DDR) that results in cell cycle regulation, DNA repair and, in severe cases, cell death…”
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14
Light, chromatin, action: nuclear events regulating light signaling in Arabidopsis
Published in The New phytologist (01-10-2022)“…Summary The plant nucleus provides a major hub for environmental signal integration at the chromatin level. Multiple light signaling pathways operate and…”
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15
Plant Chromatin Catches the Sun
Published in Frontiers in plant science (24-01-2020)“…Plants use solar radiation as energy source for photosynthesis. They also take advantage of the information provided by the varying properties of sunlight,…”
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16
Profiling Developmentally and Environmentally Controlled Chromatin Reprogramming
Published in Methods in molecular biology (Clifton, N.J.) (2018)“…Dynamic reshuffling of the chromatin landscape is a recurrent theme orchestrated in many, if not all, plant developmental transitions and adaptive responses…”
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Intracellular reactive oxygen species trafficking participates in seed dormancy alleviation in Arabidopsis seeds
Published in The New phytologist (01-05-2022)“…Summary Reactive oxygen species (ROS) release seed dormancy through an unknown mechanism. We used different seed dormancy‐breaking treatments to decipher the…”
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DET1-mediated COP1 regulation avoids HY5 activity over second-site gene targets to tune plant photomorphogenesis
Published in Molecular plant (07-06-2021)“…DE-ETIOLATED 1 (DET1) and CONSTITUTIVE PHOTOMORPHOGENESIS 1 (COP1) are two essential repressors of Arabidopsis photomorphogenesis. These proteins can associate…”
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The plant POLYMERASE-ASSOCIATED FACTOR1 complex links transcription and H2B monoubiquitination genome wide
Published in Plant physiology (Bethesda) (30-04-2024)“…Abstract The evolutionarily conserved POLYMERASE-ASSOCIATED FACTOR1 complex (Paf1C) participates in transcription, and research in animals and fungi suggests…”
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The TELOMERE REPEAT BINDING proteins TRB4 and TRB5 function as transcriptional activators of PRC2-controlled genes to regulate plant development
Published in Plant communications (08-07-2024)“…Plant-specific transcriptional regulators called TELOMERE REPEAT BINDING proteins (TRBs) combine two DNA-binding domains, the GH1 domain, which binds to linker…”
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