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42 results on '"Pre-mRNA splicing"'

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1. Bi-allelic loss-of-function variants in WBP4, encoding a spliceosome protein, result in a variable neurodevelopmental syndrome.

2. The ribosomal protein L22 binds the MDM4 pre-mRNA and promotes exon skipping to activate p53 upon nucleolar stress.

3. Cellular pathways influenced by protein arginine methylation: Implications for cancer.

4. Serine/arginine-rich splicing factor 7 promotes the type I interferon response by activating Irf7 transcription.

5. MDC1 maintains active elongation complexes of RNA polymerase II

6. SAP30BP interacts with RBM17/SPF45 to promote splicing in a subset of human short introns.

7. Regulating PCCA gene expression by modulation of pseudoexon splicing patterns to rescue enzyme activity in propionic acidemia.

8. Pathogenic Abnormal Splicing Due to Intronic Deletions that Induce Biophysical Space Constraint for Spliceosome Assembly.

9. AtPRMT5 Regulates Shoot Regeneration through Mediating Histone H4R3 Dimethylation on KRPs and Pre-mRNA Splicing of RKP in Arabidopsis.

10. Detection and targeting of splicing deregulation in pediatric acute myeloid leukemia stem cells.

11. Molecular Architecture of SF3b and Structural Consequences of Its Cancer-Related Mutations.

12. MDC1 maintains active elongation complexes of RNA polymerase II.

13. Transcript-specific determinants of pre-mRNA splicing revealed through in vivo kinetic analyses of the 1st and 2nd chemical steps.

14. GAA Deficiency in Pompe Disease Is Alleviated by Exon Inclusion in iPSC-Derived Skeletal Muscle Cells

15. Spliceostatin A interaction with SF3B limits U1 snRNP availability and causes premature cleavage and polyadenylation.

16. Network theory reveals principles of spliceosome structure and dynamics.

17. LARP7-Mediated U6 snRNA Modification Ensures Splicing Fidelity and Spermatogenesis in Mice.

18. Widespread Transcriptional Readthrough Caused by Nab2 Depletion Leads to Chimeric Transcripts with Retained Introns.

19. Structural Insights into the Roles of Metazoan-Specific Splicing Factors in the Human Step 1 Spliceosome.

20. Rational Design of an Activatable Reporter for Quantitative Imaging of RNA Aberrant Splicing In Vivo .

21. An Unchartered Journey for Ribosomes: Circumnavigating Circular RNAs to Produce Proteins.

22. Daywake, an Anti-siesta Gene Linked to a Splicing-Based Thermostat from an Adjoining Clock Gene.

23. A Systems-Level Study Reveals Regulators of Membrane-less Organelles in Human Cells.

24. The Splicing Factor hnRNP M Is a Critical Regulator of Innate Immune Gene Expression in Macrophages.

25. Structural Basis of Splicing Modulation by Antitumor Macrolide Compounds.

26. Structure of the Post-catalytic Spliceosome from Saccharomyces cerevisiae.

27. The Output of Protein-Coding Genes Shifts to Circular RNAs When the Pre-mRNA Processing Machinery Is Limiting.

28. Structure of an Intron Lariat Spliceosome from Saccharomyces cerevisiae.

29. Cryo-EM Structure of a Pre-catalytic Human Spliceosome Primed for Activation.

30. Error-Prone Splicing Controlled by the Ubiquitin Relative Hub1.

31. An Atomic Structure of the Human Spliceosome.

32. Spliceosome Profiling Visualizes Operations of a Dynamic RNP at Nucleotide Resolution.

33. Prp19/Pso4 Is an Autoinhibited Ubiquitin Ligase Activated by Stepwise Assembly of Three Splicing Factors.

34. Genome-wide CRISPR-Cas9 Screen Identifies Leukemia-Specific Dependence on a Pre-mRNA Metabolic Pathway Regulated by DCPS.

35. Antisense Oligonucleotides Promote Exon Inclusion and Correct the Common c.-32-13T>G GAA Splicing Variant in Pompe Disease.

36. GAA Deficiency in Pompe Disease Is Alleviated by Exon Inclusion in iPSC-Derived Skeletal Muscle Cells.

37. Evidence that C9ORF72 Dipeptide Repeat Proteins Associate with U2 snRNP to Cause Mis-splicing in ALS/FTD Patients.

38. Ribosomal Proteins Rpl22 and Rpl22l1 Control Morphogenesis by Regulating Pre-mRNA Splicing.

39. Forward Genetic Screens in Zebrafish Identify Pre-mRNA-Processing Pathways Regulating Early T Cell Development.

40. Scaffolding in the Spliceosome via Single α Helices.

41. Structural Basis for the Functional Coupling of the Alternative Splicing Factors Smu1 and RED.

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