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1. BRN2 is a non-canonical melanoma tumor-suppressor

2. A role for Dynlt3 in melanosome movement, distribution, acidity and transfer

3. Evaluation of a strategy for difficult embryo transfers from a prospective series of 2,046 transfers

4. ZEB1 transcription factor promotes immune escape in melanoma

5. MITF reprograms the extracellular matrix and focal adhesion in melanoma

6. Melanoma Risk and Melanocyte Biology

7. The triennial International Pigment Cell Conference (IPCC)

8. Routing of the RAB6 secretory pathway towards the lysosome related organelle of melanocytes

9. RAF proteins exert both specific and compensatory functions during tumour progression of NRAS-driven melanoma

10. MITF and TFEB cross-regulation in melanoma cells.

11. New Functional Signatures for Understanding Melanoma Biology from Tumor Cell Lineage-Specific Analysis

12. Structure-based mutational analysis of ICAT residues mediating negative regulation of β-catenin co-transcriptional activity.

13. B-Raf and C-Raf Are Required for Melanocyte Stem Cell Self-Maintenance

14. Tyrosinase-Cre-Mediated Deletion of the Autophagy Gene Atg7 Leads to Accumulation of the RPE65 Variant M450 in the Retinal Pigment Epithelium of C57BL/6 Mice.

15. Chromatin-Remodelling Complex NURF Is Essential for Differentiation of Adult Melanocyte Stem Cells.

16. The tyrosine phosphatase SHP2 associates with CUB domain-containing protein-1 (CDCP1), regulating its expression at the cell surface in a phosphorylation-dependent manner.

17. Retinoid-X-receptors (α/β) in melanocytes modulate innate immune responses and differentially regulate cell survival following UV irradiation.

18. Automated cell tracking and analysis in phase-contrast videos (iTrack4U): development of Java software based on combined mean-shift processes.

19. A subpopulation of smooth muscle cells, derived from melanocyte-competent precursors, prevents patent ductus arteriosus.

20. YY1 regulates melanocyte development and function by cooperating with MITF.

21. Supplementary Data from Cadherin-Cadherin Engagement Promotes Cell Survival via Rac1/Cdc42 and Signal Transducer and Activator of Transcription-3

22. Data from Cadherin-Cadherin Engagement Promotes Cell Survival via Rac1/Cdc42 and Signal Transducer and Activator of Transcription-3

23. Supplementary Figures from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

27. Supplementary Tables 1-7 from Netrin-1 and Its Receptor DCC Are Causally Implicated in Melanoma Progression

28. Data from TET2-Dependent Hydroxymethylome Plasticity Reduces Melanoma Initiation and Progression

29. Data from Netrin-1 and Its Receptor DCC Are Causally Implicated in Melanoma Progression

30. Supplementary Figures 1-5 from Netrin-1 and Its Receptor DCC Are Causally Implicated in Melanoma Progression

31. Supplementary Data from Small-Molecule Drugs Mimicking DNA Damage: A New Strategy for Sensitizing Tumors to Radiotherapy

32. Supplementary Methods, Figure Legends, Tables 1 - 5 from β-Catenin Inhibitor ICAT Modulates the Invasive Motility of Melanoma Cells

35. Data from Stable Overexpression of Smad7 in Human Melanoma Cells Impairs Bone Metastasis

38. Data from β-Catenin Inhibitor ICAT Modulates the Invasive Motility of Melanoma Cells

39. Supplementary Figure 7 from β-Catenin Inhibitor ICAT Modulates the Invasive Motility of Melanoma Cells

45. Supplementary Figure 6 from β-Catenin Inhibitor ICAT Modulates the Invasive Motility of Melanoma Cells

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