40 results on '"Moon, Nam-Sung"'
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2. Retraction: Pleiotropic role of Drosophila phosphoribosyl pyrophosphate synthetase in autophagy and lysosome homeostasis
3. Translational control of E2f1 regulates the Drosophila cell cycle
4. E2F1 represses β-catenin transcription and is antagonized by both pRB and CDK8
5. Proper CycE–Cdk2 activity in endocycling tissues requires regulation of the cyclin-dependent kinase inhibitor Dacapo by dE2F1b in Drosophila
6. PRPS-Associated Disorders and the Drosophila Model of Arts Syndrome
7. E2F-dependent genetic oscillators control endoreplication
8. Pleiotropic role of Drosophila phosphoribosyl pyrophosphate synthetase in autophagy and lysosome homeostasis
9. Drosophilaribosomal protein S5b is essential for oogenesis and interacts with distinct RNAs
10. Patient-derivedphosphoribosyl pyrophosphate synthetasemutations inDrosophilaresult in autophagy and lysosome dysfunction
11. An alternatively spliced form affecting the Marked Box domain of Drosophila E2F1 is required for proper cell cycle regulation
12. Ribosomal Protein S5b is Essential for Oogenesis and is Required to Maintain Mitochondrial Integrity and Function in Drosophila Melanogaster
13. Proper CycE–Cdk2 activity in endocycling tissues requires regulation of the cyclin-dependent kinase inhibitor Dacapo by dE2F1b in Drosophila
14. GI cyclin-dependent kinases are insufficient to reverse dE2F2-mediated repression
15. Alternate transcripts of the Drosophila “activator” E2F are necessary for maintenance of cell cycle exit during development
16. Loss of dE2F Compromises Mitochondrial Function
17. The Components of Drosophila Histone Chaperone dCAF-1 Are Required for the Cell Death Phenotype Associated with rbf1 Mutation
18. Capicua regulates proliferation and survival of RB-deficient cells in Drosophila
19. A Shared Role for RBF1 and dCAP-D3 in the Regulation of Transcription with Consequences for Innate Immunity
20. Rb deficiency during Drosophila eye development deregulates EMC, causing defects in the development of photoreceptors and cone cells
21. Tuberous Sclerosis Complex 1 Regulates dE2F1 Expression during Development and Cooperates with RBF1 to Control Proliferation and Survival
22. Combined Inactivation of pRB and Hippo Pathways Induces Dedifferentiation in the Drosophila Retina
23. E2F and p53 Induce Apoptosis Independently during Drosophila Development but Intersect in the Context of DNA Damage
24. E2F7 and E2F8 Keep the E2F Family in Balance
25. Mutation of Drosophila Lsd1 Disrupts H3-K4 Methylation, Resulting in Tissue-Specific Defects during Development
26. A Gradient of Epidermal Growth Factor Receptor Signaling Determines the Sensitivity of rbf1 Mutant Cells to E2F-Dependent Apoptosis
27. Functional Identification of Api5 as a Suppressor of E2F-Dependent Apoptosis In Vivo
28. Drosophila E2F1 Has Context-Specific Pro- and Antiapoptotic Properties during Development
29. Retinoblastoma Family 2 is Required In Vivo for the Tissue-Specific Repression of dE2F2 target Genes
30. dDP Is Needed for Normal Cell Proliferation
31. A Cathepsin L Isoform that Is Devoid of a Signal Peptide Localizes to the Nucleus in S Phase and Processes the CDP/Cux Transcription Factor
32. Expression of N-terminally truncated isoforms of CDP/CUX is increased in human uterine leiomyomas
33. S Phase-Specific Proteolytic Cleavage Is Required To Activate Stable DNA Binding by the CDP/Cut Homeodomain Protein
34. The Role of CDP in the Negative Regulation ofCXCL1 Gene Expression
35. CCAAT Displacement Activity Involves CUT Repeats 1 and 2, Not the CUT Homeodomain
36. Human Cut-Like Repressor Protein Binds TGFβ Type II Receptor Gene Promoter
37. The Role of CDP in the Negative Regulation ofCXCL1Gene Expression*
38. The components of Drosophila histone chaperone dCAF-1 are required for the cell death phenotype associated with rbf1 mutation.
39. Capicua regulates proliferation and survival of RB-deficient cells in Drosophila.
40. E2F1 represses beta-catenin transcription and is antagonized by both pRB and CDK8.
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