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22 results on '"Akiko Hashimoto-Tane"'

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1. Dissociation of LAG-3 inhibitory cluster from TCR microcluster by immune checkpoint blockade

2. Inhibition of T cell activation and function by the adaptor protein CIN85

3. Analyzing the Dynamics of Signaling Microclusters

4. Analyzing the Dynamics of Signaling Microclusters

5. Dynamic Regulation of TCR–Microclusters and the Microsynapse for T Cell Activation

6. Programmed cell death 1 forms negative costimulatory microclusters that directly inhibit T cell receptor signaling by recruiting phosphatase SHP2

7. Dynamic regulation of T cell activation and co-stimulation through TCR-microclusters

8. Micro-adhesion rings surrounding TCR microclusters are essential for T cell activation

9. Newly generated T cell receptor microclusters initiate and sustain T cell activaion by recruitment of Zap70 and SLP-76

10. Dynamic Regulation of TCR-Microclusters and the Microsynapse for T Cell Activation.

11. Nucleic acid sensing by T cells initiates Th2 cell differentiation

12. T-cell receptor microclusters critical for T-cell activation are formed independently of lipid raft clustering

13. Spatiotemporal basis of CTLA-4 costimulatory molecule-mediated negative regulation of T cell activation

14. Spatiotemporal regulation of T cell costimulation by TCR-CD28 microclusters and protein kinase C theta translocation

15. Dynein-Driven Transport of T Cell Receptor Microclusters Regulates Immune Synapse Formation and T Cell Activation

16. Contributions of the N-terminal flanking residues of an antigenic peptide from the Japanese cedar pollen allergen Cry j 1 to the T-cell activation by HLA-DP5.

17. Nanomaterials for antigen-specific immune tolerance therapy.

18. Researchers from RIKEN Center for Integrative Medical Sciences Discuss Research in Immunology (Dissociation of LAG-3 inhibitory cluster from TCR microcluster by immune checkpoint blockade).

19. Reliable target ligand detection by noise-induced receptor cluster formation.

20. Investigators at Structural Biology Laboratory Detail Findings in Allergies (Contributions of the N-terminal Flanking Residues of an Antigenic Peptide From the Japanese Cedar Pollen Allergen Cry J 1 To the T-cell Activation By Hla-dp5).

21. Inhibition of T cell activation and function by the adaptor protein CIN85.

22. Investigators at Structural Biology Laboratory Detail Findings in Allergies (Contributions of the N-terminal Flanking Residues of an Antigenic Peptide From the Japanese Cedar Pollen Allergen Cry J 1 To the T-cell Activation By Hla-dp5)

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