33 results on '"CHARRIN, Stéphanie"'
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2. Tetraspanin CD53 controls T cell immunity through regulation of CD45RO stability, mobility, and function
3. New insights into the tetraspanin Tspan5 using novel monoclonal antibodies
4. Differential proteomics argues against a general role for CD9, CD81 or CD63 in the sorting of proteins into extracellular vesicles
5. Organisation of the Tetraspanin Web
6. TspanC8 tetraspanins differentially regulate the cleavage of ADAM10 substrates, Notch activation and ADAM10 membrane compartmentalization
7. CD63 regulates cholesterol storage within endosomes and its distribution via exosomes
8. The Tetraspanin CD63 Regulates ESCRT-Independent and -Dependent Endosomal Sorting during Melanogenesis
9. The Ig Domain Protein CD9P-1 Down-regulates CD81 Ability to Support Plasmodium yoelii Infection
10. In situ chemical cross-linking on living cells reveals CD9P-1 cis-oligomer at cell surface
11. Ezrin tunes T‐cell activation by controlling Dlg1 and microtubule positioning at the immunological synapse
12. Tetraspanins connect several types of Ig proteins: IgM is a novel component of the tetraspanin web on B-lymphoid cells
13. EWI-2 and EWI-F Link the Tetraspanin Web to the Actin Cytoskeleton through Their Direct Association with Ezrin-Radixin-Moesin Proteins
14. Rapid Isolation of Rare Isotype-Switched Hybridoma Variants: Application to the Generation of IgG2a and IgG2b MAb to CD63, a Late Endosome and Exosome Marker
15. TspanC8 tetraspanins differentially regulate ADAM10 endocytosis and half-life
16. A Role for Apical Membrane Antigen 1 during Invasion of Hepatocytes by Plasmodium falciparum Sporozoites
17. Midkine Is Involved in Kidney Development and in Its Regulation by Retinoids
18. Multiple levels of interactions within the tetraspanin web
19. Differential stability of tetraspanin/tetraspanin interactions: role of palmitoylation
20. The Major CD9 and CD81 Molecular Partner: IDENTIFICATION AND CHARACTERIZATION OF THE COMPLEXES
21. Regulation of the trafficking and the function of the metalloprotease ADAM10 by tetraspanins
22. Genetic Evidence That Captured Retroviral Envelope syncytins Contribute to Myoblast Fusion and Muscle Sexual Dimorphism in Mice
23. TspanC8 tetraspanins differentially regulate the cleavage of ADAM10 substrates, Notch activation and ADAM10 membrane compartmentalization
24. A fibrin antibody binding to fibronectin induces potent inhibition of angiogenesis
25. Tetraspanins at a glance
26. Normal muscle regeneration requires tight control of muscle cell fusion by tetraspanins CD9 and CD81
27. Lateral organization of membrane proteins: tetraspanins spin their web
28. The CD81 Partner EWI-2wint Inhibits Hepatitis C Virus Entry
29. Hepatocyte Permissiveness to Plasmodium Infection Is Conveyed by a Short and Structurally Conserved Region of the CD81 Large Extracellular Domain
30. Cholesterol contributes to the organization of tetraspanin-enriched microdomains and to CD81-dependent infection by malaria sporozoites
31. A physical and functional link between cholesterol and tetraspanins
32. EWI-2 is a new component of the tetraspanin web in hepatocytes and lymphoid cells
33. Rapid Isolation of Rare Isotype-Switched Hybridoma Variants: Application to the Generation of IgG2a and IgG2b MAb to CD63, a Late Endosome and Exosome Marker
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