39 results on '"Tran, Elizabeth J."'
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2. The genomic region of the 3′ untranslated region (3′UTR) of PHO84, rather than the antisense RNA, promotes gene repression
3. Abstract 3948: DDX5 helicase resolves G-quadruplex and transactivates MYC expression
4. Measuring Helicase Inhibition of the DEAD-Box Protein Dbp2 by Yra1
5. Transcription, translation, and DNA repair: new insights from emerging noncanonical substrates of RNA helicases
6. The RNA helicase DDX5 supports mitochondrial function in small cell lung cancer
7. The balancing act of R-loop biology: The good, the bad, and the ugly
8. The balancing act of R-loop biology: The good, the bad, and the ugly
9. DDX5 helicase resolves G-quadruplex and is involved in MYC gene transcriptional activation
10. Genome-Wide Discovery of DEAD-Box RNA Helicase Targets Reveals RNA Structural Remodeling in Transcription Termination
11. dStruct: identifying differentially reactive regions from RNA structurome profiling data
12. The DDX5/Dbp2 subfamily of DEAD‐box RNA helicases
13. The DEAD-box protein Dbp2p is linked to noncoding RNAs, the helicase Sen1p, and R-loops
14. Metabolic Adaptation to Nutrients Involves Coregulation of Gene Expression by the RNA Helicase Dbp2 and the Cyc8 Corepressor in Saccharomyces cerevisiae
15. Characterization of the mammalian DEAD-box protein DDX5 reveals functional conservation with S. cerevisiae ortholog Dbp2 in transcriptional control and glucose metabolism
16. LncRNAs: Bridging environmental sensing and gene expression
17. SAC3B, a central component of the mRNA export complex TREX-2, is required for prevention of epigenetic gene silencing inArabidopsis
18. RNA helicase DEAD box protein 5 regulates Polycomb repressive complex 2/Hox transcript antisense intergenic RNA function in hepatitis B virus infection and hepatocarcinogenesis
19. Regulated Formation of lncRNA-DNA Hybrids Enables Faster Transcriptional Induction and Environmental Adaptation
20. Recruitment, Duplex Unwinding and Protein-Mediated Inhibition of the Dead-Box RNA Helicase Dbp2 at Actively Transcribed Chromatin
21. Regulated Formation of lncRNA-DNA Hybrids Enables Faster Transcriptional Induction and Environmental Adaptation
22. Large-Scale Analysis of Kinase Signaling in Yeast Pseudohyphal Development Identifies Regulation of Ribonucleoprotein Granules
23. Macromolecular transport between the nucleus and the cytoplasm: Advances in mechanism and emerging links to disease
24. Long Noncoding RNAs Promote Transcriptional Poising of Inducible Genes
25. The DEAD-box Protein Dbp2 Functions with the RNA-Binding Protein Yra1 to Promote mRNP Assembly
26. The DEAD-box RNA Helicase Dbp2 Connects RNA Quality Control with Repression of Aberrant Transcription
27. The Dbp5 cycle at the nuclear pore complex during mRNA export I: dbp5 mutants with defects in RNA binding and ATP hydrolysis define key steps for Nup159 and Gle1
28. The Dbp5 cycle at the nuclear pore complex during mRNA export II: nucleotide cycling and mRNP remodeling by Dbp5 are controlled by Nup159 and Gle1
29. The Mitogen-Activated Protein Kinase Slt2 Regulates Nuclear Retention of Non-Heat Shock mRNAs during Heat Shock-Induced Stress
30. Recognition of Polyadenosine RNA by the Zinc Finger Domain of Nuclear Poly(A) RNA-binding Protein 2 (Nab2) Is Required for Correct mRNA 3′-End Formation*
31. The mRNA Export Factor Gle1 and Inositol Hexakisphosphate Regulate Distinct Stages of Translation
32. Nuclear mRNA export requires coordinated FG‐Nup binding and DEAD‐box protein‐mediated remodeling events
33. The DEAD-Box Protein Dbp5 Controls mRNA Export by Triggering Specific RNA:Protein Remodeling Events
34. SnapShot: Nuclear Transport
35. Inositol hexakisphosphate and Gle1 activate the DEAD-box protein Dbp5 for nuclear mRNA export
36. Dynamic Nuclear Pore Complexes: Life on the Edge
37. The coiled-coil domain of the Nop56/58 core protein is dispensable for sRNP assembly but is critical for archaeal box C/D sRNP-guided nucleotide methylation
38. The Crystal Structure of the Methanocaldococcus jannaschii Multifunctional L7Ae RNA-Binding Protein Reveals an Induced-Fit Interaction with the Box C/D RNAs,
39. Sequential 2′-O-Methylation of Archaeal Pre-tRNATrp Nucleotides Is Guided by the Intron-encoded but trans-Acting Box C/D Ribonucleoprotein of Pre-tRNA
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