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1. METTL3-mediated chromatin contacts promote stress granule phase separation through metabolic reprogramming during senescence

2. A combinatorial approach to uncover an additional Integrator subunit

3. SWI/SNF catalytic subunits’ switch drives resistance to EZH2 inhibitors in ARID1A-mutated cells

4. The Tumor Suppressor ARID1A Controls Global Transcription via Pausing of RNA Polymerase II

5. AML1/ETO oncoprotein is directed to AML1 binding regions and co-localizes with AML1 and HEB on its targets.

7. Small-Molecule Inhibition of the Acyl-Lysine Reader ENL as a Strategy against Acute Myeloid Leukemia

8. Supplementary Data from Small-Molecule Inhibition of the Acyl-Lysine Reader ENL as a Strategy against Acute Myeloid Leukemia

9. Data from Small-Molecule Inhibition of the Acyl-Lysine Reader ENL as a Strategy against Acute Myeloid Leukemia

10. Supplementary Data from Acetyl-CoA Metabolism Supports Multistep Pancreatic Tumorigenesis

11. Data from Targeting Chemotherapy to Decondensed H3K27me3-Marked Chromatin of AML Cells Enhances Leukemia Suppression

12. Figure S3 from BET Inhibitors Suppress ALDH Activity by Targeting ALDH1A1 Super-Enhancer in Ovarian Cancer

13. Data from BET Inhibitors Suppress ALDH Activity by Targeting ALDH1A1 Super-Enhancer in Ovarian Cancer

14. Supplemental Table II from Targeting Chemotherapy to Decondensed H3K27me3-Marked Chromatin of AML Cells Enhances Leukemia Suppression

15. Table S2 from BET Inhibitors Suppress ALDH Activity by Targeting ALDH1A1 Super-Enhancer in Ovarian Cancer

16. Suppl Info from BET Inhibitors Suppress ALDH Activity by Targeting ALDH1A1 Super-Enhancer in Ovarian Cancer

17. Supplementary Data from Targeting Chemotherapy to Decondensed H3K27me3-Marked Chromatin of AML Cells Enhances Leukemia Suppression

18. Targeting Chemotherapy to Decondensed H3K27me3-Marked Chromatin of AML Cells Enhances Leukemia Suppression

19. The PP2A-Integrator-CDK9 axis fine-tunes transcription and can be targeted therapeutically in cancer

20. EGR1 is a gatekeeper of inflammatory enhancers in human macrophages

21. Deletion of a pseudogene within a fragile site triggers the oncogenic expression of the mitotic CCSER1 gene

22. A PP2A-Integrator complex fine-tunes transcription by opposing CDK9

23. Rapid and scalable profiling of nascent RNA with fastGRO

24. fastGRO v1

25. ARID1A spatially partitions interphase chromosomes

26. BET Inhibitors Suppress ALDH Activity by Targeting ALDH1A1 Super-Enhancer in Ovarian Cancer

27. SWI/SNF catalytic subunits’ switch drives resistance to EZH2 inhibitors in ARID1A-mutated cells

28. Abstract NT-114: CATALYTIC SUBUNITS SWITCH DRIVES RESISTANCE TO EZH2 INHIBITORS IN ARID1A-MUTATED CELLS

29. The tumor suppressor ARID1A controls global transcription via pausing of RNA Polymerase II

30. Acetyl-CoA Metabolism Supports Multistep Pancreatic Tumorigenesis

31. Integrator mediates the biogenesis of enhancer RNAs

32. Integrator Regulates Transcriptional Initiation and Pause Release following Activation

33. Global Run-On Sequencing (GRO-Seq)

34. Targeted Enhancer Activation by a Subunit of the Integrator Complex

35. PAF1, a molecular regulator of promoter-proximal pausing by RNA Polymerase II

36. Constraining Λ Using Cluster Quadrupoles

37. The many faces of long noncoding RNAs

38. Requirement for SNAPC1 in Transcriptional Responsiveness to Diverse Extracellular Signals

39. Putting Paradoxes into Perspective: in Defence of the Alternative Vote

40. Long noncoding RNAs with enhancer-like function in human cells

41. AML1/ETO Oncoprotein Is Directed to AML1 Binding Regions and Co-Localizes with AML1 and HEB on Its Targets

42. Simulations of Hot Bubbles in the ICM

43. Genome‐wide analysis reveals a role for <scp>BRCA</scp> 1 and <scp>PALB</scp> 2 in transcriptional co‐activation

44. Mismatch repair system and aging: Microsatellite instability in peripheral blood cells from differently aged participants

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