All Stories

  1. Smc5/6 association with microtubules controls dynamic pericentromeric chromatin folding
  2. Exploration of nuclear body-enhanced sumoylation reveals that PML represses 2-cell features of embryonic stem cells
  3. Global chromatin mobility induced by a DSB is dictated by chromosomal conformation and defines the HR outcome
  4. Global chromatin mobility induced by a DSB is dictated by chromosomal conformation and defines the outcome of Homologous Recombination
  5. The Dynamic Behavior of Chromatin in Response to DNA Double-Strand Breaks
  6. 3D Genome Organization: Causes and Consequences for DNA Damage and Repair
  7. DAXX safeguards heterochromatin formation in embryonic stem cells
  8. Modified chromosome structure caused by phosphomimetic H2A modulates the DNA damage response by increasing chromatin mobility in yeast
  9. Chromosome structure due to phospho-mimetic H2A modulates DDR through increased chromatin mobility
  10. The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing
  11. Hyperosmotic Stress Response Memory is Modulated by Gene Positioning in Yeast
  12. The memory of hyperosmotic stress response in yeast is modulated by gene-positioning
  13. Chromatin mobility upon DNA damage: state of the art and remaining questions
  14. Yeast Nucleus
  15. From dynamic chromatin architecture to DNA damage repair and back
  16. Chromatin stiffening underlies enhanced locus mobility after DNA damage in budding yeast
  17. The Emerging Role of the Cytoskeleton in Chromosome Dynamics
  18. Evidence for a dual role of actin in regulating chromosome organization and dynamics in yeast
  19. Effect of nuclear architecture on the efficiency of double-strand break repair
  20. A Predictive Computational Model of the Dynamic 3D Interphase Yeast Nucleus
  21. Transcription Factor Binding to a DNA Zip Code Controls Interchromosomal Clustering at the Nuclear Periphery
  22. Principles of chromosomal organization: lessons from yeast
  23. Chromosome arm length and nuclear constraints determine the dynamic relationship of yeast subtelomeres
  24. High-resolution statistical mapping reveals gene territories in live yeast
  25. Pore nucléaire et organization fonctionnelle de la chromatine
  26. Telomere tethering at the nuclear periphery is essential for efficient DNA double strand break repair in subtelomeric region
  27. Comparative Genomics in Hemiascomycete Yeasts: Evolution of Sex, Silencing, and Subtelomeres
  28. Genome evolution in yeasts
  29. Transcription and nuclear transport of CAG/CTG trinucleotide repeats in yeast
  30. Genome-wide Nuclear Morphology Screen Identifies Novel Genes Involved in Nuclear Architecture and Gene-silencing in Saccharomyces cerevisiae
  31. Self-catalyzed Cleavage of the Yeast Nucleoporin Nup145p Precursor
  32. YEAST GENETICS TO DISSECT THE NUCLEAR PORE COMPLEX AND NUCLEOCYTOPLASMIC TRAFFICKING
  33. Two functionally distinct domains generated by invivo cleavage of Nup145p: a novel biogenesis pathway for nucleoporins
  34. Yeast nucleoporin mutants are defective in pre-tRNA splicing.
  35. NBP35 encodes an essential and evolutionary conserved protein in Saccharomyces cerevisiae with homology to a superfamily of bacterial ATPases
  36. Nup145p is required for nuclear export of mRNA and binds homopolymeric RNA in vitro via a novel conserved motif
  37. Expression of invertase activity in Yarrowia lipolytica and its use as a selective marker