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1. Split-Inteins for Simultaneous, site-specific conjugation of Quantum Dots to multiple protein targets In vivo

2. Intein-mediated site-specific conjugation of Quantum Dots to proteins in vivo

3. JNK regulates ciliogenesis through the interflagellar transport complex and actin networks.

4. Somitic mesoderm morphogenesis is necessary for neural tube closure during Xenopus development.

5. The apical ciliary adhesion complex is established at the basal foot of motile cilia and depends on the microtubule network.

6. Adherens junctions stimulate and spatially guide integrin activation and extracellular matrix deposition.

7. Distinct spatiotemporal contribution of morphogenetic events and mechanical tissue coupling during Xenopus neural tube closure.

8. FAK displacement from focal adhesions: a promising strategy to target processes implicated in cancer progression and metastasis.

9. Mitotic cell responses to substrate topological cues are independent of the molecular nature of adhesion.

10. A simple mechanochemical model for calcium signalling in embryonic epithelial cells.

11. Methods of Calpain Inhibition to Determine the Role of Calpains in Embryo Development in Amphibians.

12. Determining Temporal and Spatial Expression of Calpains in Amphibians.

13. Addressing the Functional Determinants of FAK during Ciliogenesis in Multiciliated Cells.

14. A ligand-independent integrin β1 mechanosensory complex guides spindle orientation.

15. Cell-Autonomous Ca(2+) Flashes Elicit Pulsed Contractions of an Apical Actin Network to Drive Apical Constriction during Neural Tube Closure.

16. FAK transduces extracellular forces that orient the mitotic spindle and control tissue morphogenesis.

17. 40LoVe and Samba are involved in Xenopus neural development and functionally distinct from hnRNP AB.

18. Making the connection: ciliary adhesion complexes anchor basal bodies to the actin cytoskeleton.

19. Calpain2 protease: A new member of the Wnt/Ca(2+) pathway modulating convergent extension movements in Xenopus.

20. A dominant-negative provides new insights into FAK regulation and function in early embryonic morphogenesis.

21. Xenopus laevis nucleotide binding protein 1 (xNubp1) is important for convergent extension movements and controls ciliogenesis via regulation of the actin cytoskeleton.

22. Activation of endogenous FAK via expression of its amino terminal domain in Xenopus embryos.

23. In vivo, site-specific, covalent conjugation of quantum dots to proteins via split-intein splicing.

24. High-resolution whole-mount in situ hybridization using Quantum Dot nanocrystals.

25. Imaging morphogenesis, in Xenopus with Quantum Dot nanocrystals.

26. Polarized distribution of Bcr-Abl in migrating myeloid cells and co-localization of Bcr-Abl and its target proteins.

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