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1. Mutant IDH1 Promotes Glioma Formation In Vivo

2. Inhibition of ULK1/2 and KRASG12C controls tumor growth in preclinical models of lung cancer

3. Table S1 from AKT1E17K Activates Focal Adhesion Kinase and Promotes Melanoma Brain Metastasis

4. Figure S6 from AKT1E17K Activates Focal Adhesion Kinase and Promotes Melanoma Brain Metastasis

5. Supplementary Data from AKT1E17K Activates Focal Adhesion Kinase and Promotes Melanoma Brain Metastasis

6. MYC-mediated resistance to trametinib and HCQ in PDAC is overcome by CDK4/6 and lysosomal inhibition

7. AKT1E17K Activates Focal Adhesion Kinase and Promotes Melanoma Brain Metastasis

8. Resistance mechanisms to genetic suppression of mutant NRAS in melanoma

9. Abstract 2736: AKT1E17K activates focal adhesion kinase and promotes melanoma brain metastasis

10. AKT1

11. PittGrub

12. Mutant IDH1 promotes glioma formation in vivo

13. ERG Activates the YAP1 Transcriptional Program and Induces the Development of Age-Related Prostate Tumors

14. Abstract C30: Myc amplification is a negative biomarker and a resistance mechanism to trametinib/HCQ treatment, but can be overcome by combined palbociclib/HCQ treatment

15. Melanoma Brain Metastasis: Mechanisms, Models, and Medicine

16. αE-catenin inhibits a Src–YAP1 oncogenic module that couples tyrosine kinases and the effector of Hippo signaling pathway

17. Rab11b regulates the trafficking and recycling of the epithelial sodium channel (ENaC)

18. TMOD-45. DEFINING THE ROLE OF MUTANT IDH IN GLIOMA INITIATION

19. Exocyst Requirement for Endocytic Traffic Directed Toward the Apical and Basolateral Poles of Polarized MDCK Cells

20. Endocytic trafficking of CFTR in health and disease

21. Targeting the Senescence-Overriding Cooperative Activity of Structurally Unrelated H3K9 Demethylases in Melanoma

22. α-Catenin Is a Tumor Suppressor That Controls Cell Accumulation by Regulating the Localization and Activity of the Transcriptional Coactivator Yap1

23. Science Signaling Podcast: 24 May 2011

24. Rab11b regulates the apical recycling of the cystic fibrosis transmembrane conductance regulator in polarized intestinal epithelial cells

25. A mutation in the cystic fibrosis transmembrane conductance regulator generates a novel internalization sequence and enhances endocytic rates

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