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1. TNRC18 engages H3K9me3 to mediate silencing of endogenous retrotransposons

6. DNMT1 reads heterochromatic H4K20me3 to reinforce LINE-1 DNA methylation.

7. Genetic interaction mapping informs integrative structure determination of protein complexes

8. BAHCC1 binds H3K27me3 via a conserved BAH module to mediate gene silencing and oncogenesis

9. Direct readout of heterochromatic H3K9me3 regulates DNMT1-mediated maintenance DNA methylation

10. Histone H3 proline 16 hydroxylation regulates mammalian gene expression

13. The histone methyltransferase SETD2 regulates HIV expression and latency

14. Binding to medium and long chain fatty acyls is a common property of HEAT and ARM repeat modules.

16. Taf2 mediates DNA binding of Taf14

19. Molecular insight into interactions between the Taf14, Yng1 and Sas3 subunits of the NuA3 complex.

21. An Allosteric Interaction Links USP7 to Deubiquitination and Chromatin Targeting of UHRF1

22. Correlative single molecule lattice light sheet imaging reveals the dynamic relationship between nucleosomes and the local chromatin environment.

24. SETD2 maintains nuclear lamina stability to safeguard the genome

25. SETD2 safeguards the genome against isochromosome formation

26. Combined noncanonical NF-[kappa]B agonism and targeted BET bromodomain inhibition reverse HIV latency ex vivo

29. The histone and non-histone methyllysine reader activities of the UHRF1 tandem Tudor domain are dispensable for the propagation of aberrant DNA methylation patterning in cancer cells

32. A Course-Based Undergraduate Research Experience Investigating p300 Bromodomain Mutations

33. An acetylation-mediated chromatin switch governs H3K4 methylation read-write capability

34. Data from SETD2 Haploinsufficiency for Microtubule Methylation Is an Early Driver of Genomic Instability in Renal Cell Carcinoma

35. Figure S5 from SETD2 Haploinsufficiency for Microtubule Methylation Is an Early Driver of Genomic Instability in Renal Cell Carcinoma

36. Supplementary Fig Legends from SETD2 Haploinsufficiency for Microtubule Methylation Is an Early Driver of Genomic Instability in Renal Cell Carcinoma

39. Histone H3K23-specific acetylation by MORF is coupled to H3K14 acylation

42. C. David Allis (1951–2023)

48. Combined noncanonical NF-κB agonism and targeted BET bromodomain inhibition reverse HIV latency ex vivo

50. An acetylation-mediated chromatin switch governs H3K4 methylation read-write capability

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