851 results on '"Van Roy, Frans"'
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2. Author Reply to Peer Reviews of Altered Socio-Affective Communication and Amygdala Development in mice with Protocadherin10-deficient Interneurons
3. Altered Socio-Affective Communication and Amygdala Development in mice with Protocadherin10-deficient Interneurons
4. Cadherins
5. Defining Desmosomal Plakophilin-3 Interactions
6. Evolution of Cadherins and Associated Catenins
7. A Novel Role for p120 Catenin in E-Cadherin Function
8. Hyporesponsiveness of SPRET/Ei Mice to Lethal Shock Induced by Tumor Necrosis Factor and Implications for a TNF-Based Antitumor Therapy
9. Neural defects caused by total and Wnt1-Cre mediated ablation of p120ctn in mice
10. The Lipid Phosphatase Activity of PTEN Is Critical for Stabilizing Intercellular Junctions and Reverting Invasiveness
11. α-Catenin-Vinculin Interaction Functions to Organize the Apical Junctional Complex in Epithelial Cells
12. Nanos genes and their role in development and beyond
13. Three-dimensional reconstruction of the intercalated disc including the intercellular junctions by applying volume scanning electron microscopy
14. Protein Kinase C Activation Upregulates Intercellular Adhesion of α-Catenin-Negative Human Colon Cancer Cell Variants via Induction of Desmosomes
15. A new mouse model to study the role of ectopic Nanos3 expression in cancer
16. Supplementary Movie 2 from Aberrant Activation of Fatty Acid Synthesis Suppresses Primary Cilium Formation and Distorts Tissue Development
17. Data from Aberrant Activation of Fatty Acid Synthesis Suppresses Primary Cilium Formation and Distorts Tissue Development
18. Supplementary Figure 1 from E-Cadherin Regulates Human Nanos1, which Interacts with p120ctn and Induces Tumor Cell Migration and Invasion
19. Supplementary Table 1 from The Transcription Factor Snail Induces Tumor Cell Invasion through Modulation of the Epithelial Cell Differentiation Program
20. Supplementary Figure 2 from E-Cadherin Regulates Human Nanos1, which Interacts with p120ctn and Induces Tumor Cell Migration and Invasion
21. Supplementary Movie 1 from Aberrant Activation of Fatty Acid Synthesis Suppresses Primary Cilium Formation and Distorts Tissue Development
22. Data from E-Cadherin Regulates Human Nanos1, which Interacts with p120ctn and Induces Tumor Cell Migration and Invasion
23. Supplementary Methods, Materials and Figure Legends 1-2 from E-Cadherin Regulates Human Nanos1, which Interacts with p120ctn and Induces Tumor Cell Migration and Invasion
24. Data from The Transcription Factor Snail Induces Tumor Cell Invasion through Modulation of the Epithelial Cell Differentiation Program
25. Supplementary Figures 1-9 from Aberrant Activation of Fatty Acid Synthesis Suppresses Primary Cilium Formation and Distorts Tissue Development
26. Supplementary Table 2 from The Transcription Factor Snail Induces Tumor Cell Invasion through Modulation of the Epithelial Cell Differentiation Program
27. Supplementary Figure Legends 1-9, Movie Legends 1-2 from Aberrant Activation of Fatty Acid Synthesis Suppresses Primary Cilium Formation and Distorts Tissue Development
28. Metazoan evolution of the armadillo repeat superfamily
29. Cadherins
30. Modifying PCDH19 levels affects cortical interneuron migration
31. Epithelial Cell Plasticity by Dynamic Transcriptional Regulation of E-Cadherin
32. Modifying PCDH19 levels affects cortical interneuron migration
33. Evolution and diversity of cadherins and catenins
34. Cadherins
35. Additional file 5 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
36. Additional file 33 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
37. Additional file 4 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
38. Additional file 6 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
39. Additional file 15 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
40. Additional file 22 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
41. Additional file 8 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
42. Additional file 7 of Innovative mouse models for the tumor suppressor activity of Protocadherin-10 isoforms
43. Tamoxifen and the E-Cadherin/Catenin Complex
44. Plakophilin3 loss leads to increased adenoma formation and rectal prolapse in APCmin mice
45. The Wild-Derived Inbred Mouse Strain SPRET/Ei Is Resistant to LPS and Defective in IFN-β Production
46. Tumor Necrosis Factor Cytotoxicity is Associated with Activation of Cellular Phospholipases
47. The human NANOS3 gene contributes to lung tumour invasion by inducing epithelial–mesenchymal transition
48. Loss of Epithelial Differentiation and Gain of Invasiveness Correlates with Tyrosine Phosphorylation of the E-Cadherin/β-Catenin Complex in Cells Transformed with a Temperature-Sensitive v-SRC Gene
49. Lithium Chloride Potentiates Tumor Necrosis Factor-Mediated Cytotoxicity in vitro and in vivo
50. Dissecting Tumor Cell Invasion: Epithelial Cells Acquire Invasive Properties after the Loss of Uvomorulin-Mediated Cell-Cell Adhesion
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