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Nucleic Acids Research|September 12, 2013
Structure-function analysis of Hmo1 unveils an ancestral organization of HMG-Box factors involved in ribosomal DNA transcription from yeast to humanBenjamin Albert, Christine Colleran, Isabelle Léger-Silvestre, et al.
Cell Reports|April 2, 2014
Rif1 controls DNA replication timing in yeast through the PP1 phosphatase Glc7Stefano Mattarocci, Maksym Shyian, Laure Lemmens, et al.
Cell|June 11, 2013
Rif1 and Rif2 shape telomere function and architecture through multivalent Rap1 interactionsTianlai Shi, Richard D Bunker, Stefano Mattarocci, et al.
Genome Research|October 1, 2013
High-throughput chromatin motion tracking in living yeast reveals the flexibility of the fiber throughout the genomeHoussam Hajjoul, Julien Mathon, Hubert Ranchon, et al.
Genes & Development|August 3, 2014
Two distinct promoter architectures centered on dynamic nucleosomes control ribosomal protein gene transcriptionBritta Knight, Slawomir Kubik, Bhaswar Ghosh, et al.
The Journal of Cell Biology|January 26, 2011
RNA polymerase I-specific subunits promote polymerase clustering to enhance the rRNA gene transcription cycleBenjamin Albert, Isabelle Léger-Silvestre, Christophe Normand, et al.
Molecular Biology of the Cell|April 23, 2025
New insights into nuclear import and nucleolar localization of yeast RNA exosome subunitsValdir Gomes Neto, Leidy Paola P Cepeda, Bruno R S Queiroz, et al.
Nature Structural & Molecular Biology|June 13, 2017
Rif1 maintains telomeres and mediates DNA repair by encasing DNA endsStefano Mattarocci, Julia K Reinert, Richard D Bunker, et al.
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