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2. Combining different bacteria in vaccine formulations enhances the chance for antiviral cross-reactive immunity: a detailed in silico analysis for influenza A virus

3. Structural, biochemical, and functional properties of the Rap1-Interacting Adaptor Molecule (RIAM)

4. Expression of the phagocytic receptors αMβ2 and αXβ2 is controlled by RIAM, VASP and Vinculin in neutrophil-differentiated HL-60 cells

5. Enhancing Regulatory T Cells to Treat Inflammatory and Autoimmune Diseases

6. Identification of CD8+ T cell epitopes through proteasome cleavage site predictions

7. Human Oral Epithelial Cells Suppress T Cell Function via Prostaglandin E2 Secretion

8. Computational assembly of a human Cytomegalovirus vaccine upon experimental epitope legacy

11. Phagocytic Integrins: Activation and Signaling

12. Immune Tolerance in the Oral Mucosa

13. BCEPS: A Web Server to Predict Linear B Cell Epitopes with Enhanced Immunogenicity and Cross-Reactivity

14. Characterization of Conserved and Promiscuous Human Rhinovirus CD4 T Cell Epitopes

15. Cellular Integrin α5β1 and Exosomal ADAM17 Mediate the Binding and Uptake of Exosomes Produced by Colorectal Carcinoma Cells

16. Human Oral Epithelial Cells Impair Bacteria-Mediated Maturation of Dendritic Cells and Render T Cells Unresponsive to Stimulation

17. RIAM-VASP Module Relays Integrin Complement Receptors in Outside-In Signaling Driving Particle Engulfment

18. Computer-Aided Design of an Epitope-Based Vaccine against Epstein-Barr Virus

19. EPIPOX: Immunoinformatic Characterization of the Shared T-Cell Epitome between Variola Virus and Related Pathogenic Orthopoxviruses

20. Selection of Conserved Epitopes from Hepatitis C Virus for Pan-Populational Stimulation of T-Cell Responses

24. Identification of CD8+ T cell epitopes through proteasome cleavage site predictions

25. BCEPS: A Web Server to Predict Linear B Cell Epitopes with Enhanced Immunogenicity and Cross-Reactivity

26. Characterization of Conserved and Promiscuous Human Rhinovirus CD4 T Cell Epitopes

27. Structural, biochemical, and functional properties of the Rap1-Interacting Adaptor Molecule (RIAM)

28. Functional Integrin Regulation Through Interactions with Tetraspanin CD9

29. Functional Integrin Regulation Through Interactions with Tetraspanin CD9

30. Human rhinovirus‐specific CD8 T cell responses target conserved and unusual epitopes

31. Editorial: Phagocytosis: Molecular Mechanisms and Physiological Implications

32. RIAM-VASP Module Relays Integrin Complement Receptors in Outside-In Signaling Driving Particle Engulfment

33. Computational assembly of a human Cytomegalovirus vaccine upon experimental epitope legacy

34. Human Oral Epithelial Cells Impair Bacteria-Mediated Maturation of Dendritic Cells and Render T Cells Unresponsive to Stimulation

35. Computational design of a legacy-based epitope vaccine against Human Cytomegalovirus

36. RIAM (Rap1-Interactive Adaptor Molecule)

37. Different states of integrin LFA-1 aggregation are controlled through its association with tetraspanin CD9

38. The adaptor molecule RIAM integrates signaling events critical for integrin-mediated control of immune function and cancer progression

39. Computer-Aided Design of an Epitope-Based Vaccine against Epstein-Barr Virus

40. RIAM (Rap1-Interactive Adaptor Molecule)

41. The sheddase activity of ADAM17/TACE is regulated by the tetraspanin CD9

42. EPIPOX: Immunoinformatic Characterization of the Shared T-Cell Epitome between Variola Virus and Related Pathogenic Orthopoxviruses

43. Reconstructing and Deconstructing Agonist-Induced Activation of Integrin αIIbβ3

44. RIAM, an Ena/VASP and Profilin Ligand, Interacts with Rap1-GTP and Mediates Rap1-Induced Adhesion

45. Intrinsic and Extrinsic Regulation of T Lymphocyte Quiescence

46. Customized predictions of peptide-MHC binding and T-cell epitopes using EPIMHC

47. Customized Predictions of Peptide–MHC Binding and T-Cell Epitopes Using EPIMHC

48. Modulation of the swelling-activated amino acid channel of Leishmania major promastigotes by protein kinases

49. ALCAM/CD166 adhesive function is regulated by the tetraspanin CD9

50. The MRL proteins: Adapting cell adhesion, migration and growth

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