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1. Globally elevated levels of histone H3 lysine 9 trimethylation in early infancy are associated with poor growth trajectory in Bangladeshi children

2. MYBL2-Driven Transcriptional Programs Link Replication Stress and Error-prone DNA Repair With Genomic Instability in Lung Adenocarcinoma

4. Crystal structure of the full Swi2/Snf2 remodeler Mot1 in the resting state

5. Globally elevated levels of histone H3 lysine 9 trimethylation in early infancy are associated with poor growth trajectory in Bangladeshi children

6. Transcriptomes of six mutants in the Sen1 pathway reveal combinatorial control of transcription termination across the Saccharomyces cerevisiae genome.

7. Structural basis for recognition and remodeling of the TBP:DNA:NC2 complex by Mot1

8. Histone H3 lysine 27 acetylation profile undergoes two global shifts in undernourished children and suggests altered one-carbon metabolism

9. Conformational changes and catalytic inefficiency associated with Mot1-mediated TBP–DNA dissociation

10. Histone H3 lysine 27 acetylation profile undergoes two global shifts in undernourished children and suggests one-carbon metabolite insufficiency

11. MYBL2-Driven Transcriptional Programs Link Replication Stress and Error-prone DNA Repair With Genomic Instability in Lung Adenocarcinoma

12. Gut microbiome communication with bone marrow regulates susceptibility to amebiasis

13. The Modifier of Transcription 1 (Mot1) ATPase and Spt16 Histone Chaperone Co-regulate Transcription through Preinitiation Complex Assembly and Nucleosome Organization

14. Crystal structure of the full Swi2/Snf2 remodeler Mot1 in the resting state

16. An Improved Method for Measuring Chromatin-binding Dynamics Using Time-dependent Formaldehyde Crosslinking

17. Second-generation method for analysis of chromatin binding with formaldehyde–cross-linking kinetics

18. Second-generation method for analysis of chromatin binding using formaldehyde crosslinking kinetics

19. Measuring Chromatin Interaction Dynamics on the Second Time Scale at Single-Copy Genes

20. Molecular Mechanism of Mot1, a TATA-binding Protein (TBP)-DNA Dissociating Enzyme

21. RNA Synthesis is Associated with Multiple TBP-Chromatin Binding Events

22. Structure and mechanism of the Swi2/Snf2 remodeller Mot1 in complex with its substrate TBP

23. The Snf1 kinase and proteasome-associated Rad23 regulate UV-responsive gene expression

24. Function and Structural Organization of Mot1 Bound to a Natural Target Promoter

25. Formaldehyde crosslinking: a tool for the study of chromatin complexes

27. Structural basis for recognition and remodeling of the TBP:DNA:NC2 complex by Mot1

28. Snf2/Swi2-related ATPase Mot1 drives displacement of TATA-binding protein by gripping DNA

29. Mot1-mediated control of transcription complex assembly and activity

30. Genome-wide Analysis of ARS (Autonomously Replicating Sequence) Binding Factor 1 (Abf1p)-mediated Transcriptional Regulation in Saccharomyces cerevisiae

31. Sir Antagonist 1 (San1) Is a Ubiquitin Ligase

32. Mot1 activates and represses transcription by direct, ATPase-dependent mechanisms

33. Analysis of chromatin binding dynamics using the crosslinking kinetics (CLK) method

34. A new regulatory domain on the TATA-binding protein

35. Testing for DNA Tracking by MOT1, a SNF2/SWI2 Protein Family Member

36. Cloning and Biochemical Characterization of TAF-172, a Human Homolog of Yeast Mot1

37. Analysis of the Yeast Transcription Factor TFIIA: Distinct Functional Regions and a Polymerase II-Specific Role in Basal and Activated Transcription

38. Mot1, a global repressor of RNA polymerase II transcription, inhibits TBP binding to DNA by an ATP-dependent mechanism

39. An evolutionarily ‘young’ lysine residue in histone H3 attenuates transcriptional output in Saccharomyces cerevisiae

40. One small step for Mot1; one giant leap for other Swi2/Snf2 enzymes?

41. An ATP-dependent inhibitor of TBP binding to DNA

42. RNA synthesis precision is regulated by preinitiation complex turnover

43. The Rad23 ubiquitin receptor, the proteasome and functional specificity in transcriptional control

44. TATA-binding Protein Variants That Bypass the Requirement for Mot1 in Vivo*S⃞

45. Novel Influenza Virus NS1 Antagonists Block Replication and Restore Innate Immune Function

46. The AP-1 sequence is necessary but not sufficient for phorbol induction of collagenase in fibroblasts

47. Regulation of TATA-binding protein dynamics in living yeast cells

48. Regulation of Collagenase Gene Expression in Synovial Fibroblasts

49. The NEF4 complex regulates Rad4 levels and utilizes Snf2/Swi2-related ATPase activity for nucleotide excision repair

50. Mot1 regulates the DNA binding activity of free TATA-binding protein in an ATP-dependent manner

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