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1. Aberrant MAPK Signaling Offers Therapeutic Potential for Treatment of Ovarian Carcinoma.

2. Inhibition of relaxin autocrine signaling confers therapeutic vulnerability in ovarian cancer.

3. Haploinsufficiency of RREB1 causes a Noonan-like RASopathy via epigenetic reprogramming of RAS-MAPK pathway genes.

4. Co-dependency between KRAS addiction and ARHGEF2 promotes an adaptive escape from MAPK pathway inhibition.

6. In Vivo Nanovector Delivery of a Heart-specific MicroRNA-sponge.

7. Radical probing of spliceosome assembly.

8. RANKL coordinates multiple osteoclastogenic pathways by regulating expression of ubiquitin ligase RNF146.

9. Divergent Effects of miR-181 Family Members on Myocardial Function Through Protective Cytosolic and Detrimental Mitochondrial microRNA Targets.

10. An oncogenic KRAS transcription program activates the RHOGEF ARHGEF2 to mediate transformed phenotypes in pancreatic cancer.

11. Reciprocal stabilization of ABL and TAZ regulates osteoblastogenesis through transcription factor RUNX2.

12. Transcriptional Regulation of miR-31 by Oncogenic KRAS Mediates Metastatic Phenotypes by Repressing RASA1.

13. Lessons from miR-143/145: the importance of cell-type localization of miRNAs.

14. The RhoGEF GEF-H1 is required for oncogenic RAS signaling via KSR-1.

15. RREB1 repressed miR-143/145 modulates KRAS signaling through downregulation of multiple targets.

16. Nuclear miRNA regulates the mitochondrial genome in the heart.

17. MicroRNA profiling of diverse endothelial cell types.

18. Role of pri-miRNA tertiary structure in miR-17~92 miRNA biogenesis.

19. Restitution of tumor suppressor microRNAs using a systemic nanovector inhibits pancreatic cancer growth in mice.

20. Repression of the miR-143/145 cluster by oncogenic Ras initiates a tumor-promoting feed-forward pathway.

21. Identifying targets of miR-143 using a SILAC-based proteomic approach.

22. A resource for analysis of microRNA expression and function in pancreatic ductal adenocarcinoma cells.

23. Functional integration of microRNAs into oncogenic and tumor suppressor pathways.

25. Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis.

26. A small piece in the cancer puzzle: microRNAs as tumor suppressors and oncogenes.

27. Crystal structure of a core spliceosomal protein interface.

28. Characterization of a U2AF-independent commitment complex (E') in the mammalian spliceosome assembly pathway.

29. RNAi: running interference for the cell.

30. Structuring of the 3' splice site by U2AF65.

31. Early organization of pre-mRNA during spliceosome assembly.

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