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6. STING and IRF3 in stromal fibroblasts enable sensing of genomic stress in cancer cells to undermine oncolytic viral therapy

7. STRIPAK components determine mode of cancer cell migration and metastasis

8. Matrix geometry determines optimal cancer cell migration strategy and modulates response to interventions

9. A mechanically active heterotypic E-cadherin/N-cadherin adhesion enables fibroblasts to drive cancer cell invasion

10. Collective cell migration requires suppression of actomyosin at cell–cell contacts mediated by DDR1 and the cell polarity regulators Par3 and Par6

11. Localised and reversible TGFβ signalling switches breast cancer cells from cohesive to single cell motility

12. Myocardin-related transcription factors and SRF are required for cytoskeletal dynamics and experimental metastasis

13. A mechanically active heterotypic E-cadherin/N-cadherin adhesion enables fibroblasts to drive cancer cell invasion

14. Chris Marshall 1949-2015

15. Retrograde flow of cadherins in collective cell migration

16. Membrane blebbing during apoptosis results from caspase-mediated activation of ROCK I

17. Mechanotransduction and YAP-dependent matrix remodelling is required for the generation and maintenance of cancer-associated fibroblasts

19. Fibroblast-led collective invasion of carcinoma cells with differing roles for RhoGTPases in leading and following cells

20. PDK1 regulates cancer cell motility by antagonising inhibition of ROCK1 by RhoE

23. Differing modes of tumour cell invasion have distinct requirements for Rho/ROCK signalling and extracellular proteolysis

25. Mechanotransduction and YAP-dependent matrix remodelling is required for the generation and maintenance of cancer-associated fibroblasts

38. STRIPAK components determine mode of cancer cell migration and metastasis.

39. Collective cell migration requires suppression of actomyosin at cell-cell contacts mediated by DDR1 and the cell polarity regulators Par3 and Par6.

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