44 results on '"Suzuki, Shintaro T."'
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2. Introduction
3. Adhesion properties and retinofugal expression of chicken protocadherin-19
4. Protocadherin-9 involvement in retinal development in Xenopus laevis
5. The extracellular domains of E- and N-cadherin determine the scattered punctate localization in epithelial cells and the cytoplasmic domains modulate the localization
6. Distribution of OL-protocadherin in axon fibers in the developing chick nervous system
7. N-Cadherin Expressed on Malignant T Cell Lymphoma Cells is Functional, and Promotes Heterotypic Adhesion Between the Lymphoma Cells and Mesenchymal Cells Expressing N-Cadherin
8. Lateral Clustering of Cadherin-4 without Homophilic Interaction: Possible Involvement in the Concentration Process at Cell–Cell Adhesion Sites as Well as in the Cell Adhesion Activity
9. Mutation Analysis of Cadherin-4 Reveals Amino Acid Residues of EC1 Important for the Structure and Function
10. Protocadherin 2C: A New Member of the Protocadherin 2 Subfamily Expressed in a Redundant Manner with OL-Protocadherin in the Developing Brain
11. Desmoglein 2 regulates the intestinal epithelial barrier via p38 mitogen-activated protein kinase
12. Desmocollin-2 alone forms functional desmosomal plaques, with the plaque formation requiring the juxtamembrane region and plakophilins
13. The extracellular domains of E- and N-cadherin determine the scattered punctate localization in epithelial cells and the cytoplasmic domains modulate the localization
14. OL-protocadherin is essential for growth of striatal axons and thalamocortical projections
15. Desmocollin-2 alone forms functional desmosomal plaques, with the plaque formation requiring the juxtamembrane region and plakophilins.
16. Protocadherin-9 involvement in retinal development in Xenopus laevis.
17. Patch/matrix patterns of gray matter differentiation in the telencephalon of chicken and mouse
18. Restricted expression of protocadherin 2A in the developing mouse brain
19. Recent Progress in Protocadherin Research
20. Expression of a Novel Protocadherin, OL-Protocadherin, in a Subset of Functional Systems of the Developing Mouse Brain
21. Molecular Properties and Chromosomal Location of Cadherin-8
22. Structural and functional diversity of cadherin superfamily: Are new members of cadherin superfamily involved in signal transduction pathway?
23. Cloning, Expression, and Chromosomal Localization of a Novel Cadherin-Related Protein, Protocadherin-3
24. Protocadherin Pcdh2 shows properties similar to, but distinct from, those of classical cadherins
25. Epithelial DLD-1 Cells with Disrupted E-cadherin Gene Retain the Ability to Form Cell Junctions and Apico-basal Polarity
26. Protocadherins and diversity of the cadherin superfamily
27. Cadherin-Related Diseases
28. Cadherins in the Auditory Sensory Organ
29. Cadherins in Cancer
30. The Nonclustered Protocadherins
31. Clustered Protocadherins
32. Desmosomal Cadherins
33. Cadherins in Neural Development
34. Cooperative Roles of Nectins with Cadherins in Physiological and Pathological Processes
35. Various Atypical Cadherins: T-Cadherin, RET, Calsyntenin, and 7D-Cadherin
36. Structure and Function of Cadherin Extracellular Regions
37. Seven-Pass Transmembrane Cadherin CELSRs, and Fat4 and Dchs1 Cadherins: From Planar Cell Polarity to Three-Dimensional Organ Architecture
38. Regulation of Cadherin–Catenin Biology by Mechanical Force and Phosphorylation
39. Classical Cadherins
40. Evolution of Cadherins and Associated Catenins
41. Epithelial DLD-1 Cells with Disrupted E-cadherin Gene Retain the Ability to Form Cell Junctions and Apico-basal Polarity.
42. p120-Catenin is essential for N-cadherin-mediated formation of proper junctional structure, thereby establishing cell polarity in epithelial cells.
43. [Structure and function of cadherins].
44. The cadherin superfamily in neural development: diversity, function and interaction with other molecules.
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