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21 results on '"Olivier, Gadal"'

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1. Non-Coding, RNAPII-Dependent Transcription at the Promoters of rRNA Genes Regulates Their Chromatin State in S. cerevisiae

2. Nuclear envelope expansion in budding yeast is independent of cell growth and does not determine nuclear volume

3. Regulation of Cohesin-Mediated Chromosome Folding by Eco1 and Other Partners

4. A major role for Eco1 in regulating cohesin-mediated mitotic chromosome folding

5. Quantification of the dynamic behaviour of ribosomal DNA genes and nucleolus during yeast Saccharomyces cerevisiae cell cycle

6. Rouse model with transient intramolecular contacts on a timescale of seconds recapitulates folding and fluctuation of yeast chromosomes

7. Genetic analyses led to the discovery of a super-active mutant of the RNA polymerase I

8. High resolution microscopy reveals the nuclear shape of budding yeast during cell cycle and in various biological states

9. Decoding the principles underlying the frequency of association with nucleoli for RNA polymerase III–transcribed genes in budding yeast

10. Capturing Chromosome Structural Properties From Their Spatial and Temporal Fluctuations

11. High-throughput chromatin motion tracking in living yeast reveals the flexibility of the fiber throughout the genome

12. Systematic characterization of the conformation and dynamics of budding yeast chromosome XII

13. Nuclear organization and chromatin dynamics in yeast: Biophysical models or biologically driven interactions?

14. RNA polymerase I-specific subunits promote polymerase clustering to enhance the rRNA gene transcription cycle

15. Cell cycle-dependent kinetochore localization of condensin complex in Saccharomyces cerevisiae

16. Hmo1 Is Required for TOR-Dependent Regulation of Ribosomal Protein Gene Transcription▿ †

17. RNA polymerase I-specific subunit CAST/hPAF49 has a role in the activation of transcription by upstream binding factor

18. SAGA interacting factors confine sub-diffusion of transcribed genes to the nuclear envelope

19. Rlp7p is associated with 60S preribosomes, restricted to the granular component of the nucleolus, and required for pre-rRNA processing

20. The Nucle(ol)ar Tif6p and Efl1p Are Required for a Late Cytoplasmic Step of Ribosome Synthesis

21. Telomere tethering at the nuclear periphery is essential for efficient DNA double strand break repair in subtelomeric region

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