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Your search keyword '"James L. Manley"' showing total 20 results

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20 results on '"James L. Manley"'

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1. Disease-Causing Mutations in SF3B1 Alter Splicing by Disrupting Interaction with SUGP1

2. PARP1 Represses PAP and Inhibits Polyadenylation during Heat Shock

3. Mechanisms and Consequences of Alternative Polyadenylation

4. Structural Basis for Dimerization and Activity of Human PAPD1, a Noncanonical Poly(A) Polymerase

5. Molecular Architecture of the Human Pre-mRNA 3′ Processing Complex

6. Chromatin Binding of SRp20 and ASF/SF2 and Dissociation from Mitotic Chromosomes Is Modulated by Histone H3 Serine 10 Phosphorylation

7. Recognition of Trimethylated Histone H3 Lysine 4 Facilitates the Recruitment of Transcription Postinitiation Factors and Pre-mRNA Splicing

8. The Prolyl Isomerase Pin1 Functions in Mitotic Chromosome Condensation

9. Crystal Structure of Murine CstF-77: Dimeric Association and Implications for Polyadenylation of mRNA Precursors

10. Nucleotide Binding by the MDM2 RING Domain Facilitates Arf-Independent MDM2 Nucleolar Localization

11. MPK1/SLT2 Links Multiple Stress Responses with Gene Expression in Budding Yeast by Phosphorylating Tyr1 of the RNAP II CTD

12. Evolutionarily Conserved Interaction between CstF-64 and PC4 Links Transcription, Polyadenylation, and Termination

13. Phosphorylation of CPEB by Eg2 Mediates the Recruitment of CPSF into an Active Cytoplasmic Polyadenylation Complex

14. Allosteric Regulation of Even-skipped Repression Activity by Phosphorylation

15. Levels of Polyadenylation Factor CstF-64 Control IgM Heavy Chain mRNA Accumulation and Other Events Associated with B Cell Differentiation

16. Transcriptional activators enhance polyadenylation of mRNA precursors

17. A complex signaling pathway regulates SRp38 phosphorylation and pre-mRNA splicing in response to heat shock

18. PP1/PP2A phosphatases are required for the second step of Pre-mRNA splicing and target specific snRNP proteins

19. The mammalian RNA polymerase II C-terminal domain interacts with RNA to suppress transcription-coupled 3' end formation

20. From Transcription to mRNA: PAF Provides a New Path

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