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1. The Src-Family Kinases SRC and BLK Contribute to the CLDN6-Adhesion Signaling.

2. The region-selective regulation of endothelial claudin-5 expression and signaling in brain health and disorders.

3. EMID1, a multifunctional molecule identified in a murine model for the invasion independent metastasis pathway.

4. Aberrant Claudin-6-Adhesion Signaling Promotes Endometrial Cancer Progression via Estrogen Receptor α.

5. Soluble JAM-C Ectodomain Serves as the Niche for Adipose-Derived Stromal/Stem Cells.

6. Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression.

7. Cell adhesion signals regulate the nuclear receptor activity.

8. Identification of S100A14 as a metastasis-promoting molecule in a murine organotropic metastasis model.

9. Differential expression of a stress-regulated gene Nr4a2 characterizes early- and late-born hippocampal granule cells.

10. Expression of liver X receptors in normal and refractory carcinoma tissues of the human lung and pancreas.

11. A novel occludin-targeting monoclonal antibody prevents hepatitis C virus infection in vitro .

12. PKA activation and endothelial claudin-5 breakdown in the schizophrenic prefrontal cortex.

13. Production of Single-Chain Fv Antibodies Specific for GA-Pyridine, an Advanced Glycation End-Product (AGE), with Reduced Inter-Domain Motion.

14. Liver X receptor reduces proliferation of human oral cancer cells by promoting cholesterol efflux via up-regulation of ABCA1 expression.

15. Co-expression of S100A14 and S100A16 correlates with a poor prognosis in human breast cancer and promotes cancer cell invasion.

16. Laminin α1 regulates age-related mesangial cell proliferation and mesangial matrix accumulation through the TGF-β pathway.

17. The tight-junction protein claudin-6 induces epithelial differentiation from mouse F9 and embryonic stem cells.

18. Isolation and characterization of multipotential mesenchymal cells from the mouse synovium.

19. Laminin α1 is essential for mouse cerebellar development.

20. Possible involvement of tight junctions, extracellular matrix and nuclear receptors in epithelial differentiation.

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