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  1. Expression of Oncogenic Drivers in 3D Cell Culture Depends on Nuclear ATP Synthesis by NUDT5
  2. ATP, Mg2+, Nuclear Phase Separation, and Genome Accessibility
  3. Arginine Citrullination at the C-Terminal Domain Controls RNA Polymerase II Transcription
  4. Hormone-control regions mediate steroid receptor–dependent genome organization
  5. Unliganded Progesterone Receptor Governs Estrogen Receptor Gene Expression by Regulating DNA Methylation in Breast Cancer Cells
  6. Targeted NUDT5 inhibitors block hormone signaling in breast cancer cells
  7. Insight into the machinery that oils chromatin dynamics
  8. Hormone‐induced repression of genes requires BRG 1‐mediated H1.2 deposition at target promoters
  9. ADP-ribose–derived nuclear ATP synthesis by NUDIX5 is required for chromatin remodeling
  10. Linker histones in hormonal gene regulation
  11. DNA damage and gene transcription: accident or necessity?
  12. Distinct structural transitions of chromatin topological domains correlate with coordinated hormone-induced gene regulation
  13. PARty promoters
  14. CDK2-dependent activation of PARP-1 is required for hormonal gene regulation in breast cancer cells
  15. Progesterone Signaling to Chromatin in Breast Cancer Cells. Two Initial Cycles of Remodeling
  16. TopBP1 contains a transcriptional activation domain suppressed by two adjacent BRCT domains