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Adam, T., Arpin, M., Prevost, M. C., Gounon, P. and Sansonetti, P. J (1995). Cytoskeletal rearrangments and the functional role of T-plastin during entry of Shigella flexneri into HeLa cells. J. Cell Biol 129, 367-381.[Abstract/Free Full Text]

Adam, T., Giry, M., Boquet, P. and Sansonetti, P. J (1996). Rho-dependent membrane folding causes Shigella entry into epithelial cells. EMBO J 15, 3315-3321.[Medline]

Algrain, M., Turunen, O., Vaheri, A., Louvard, D. and Arpin, M (1993). Ezrin contains cytoskeleton and membrane binding domains accounting for its proposed role as a membrane-cytoskeletal linker. J. Cell Biol 120, 129-139.[Abstract/Free Full Text]

Amieva, M. R. and Furthmayr, H (1995). Subcellular localization of moesin in dynamic filopodia, retraction fibers, and other structures involved in substrate exploration, attachment, and cell-cell contacts. Exp. Cell Res 219, 180-196.[Medline]

Andreoli, C., Martin, M., Le Borgne, R., Reggio, H. and Mangeat, P (1994). Ezrin has properties to self-associate at the plasma membrane. J. Cell Sci 107, 2509-2521.[Abstract]

Arpin, M., Algrain, M. and Louvard, D (1994). Membrane-actin filament connections: an increasing diversity of players related to band 4.1. Curr. Opin. Cell Biol 6, 136-141.[Medline]

Bernardini, M. L., Mounier, J., d'Hauteville, H., Coquis-Rondon, M. and Sansonetti, P. J (1989). Identification of icsA , a plasmid locus of Shigella flexneri that governs bacterial intra-and intercellular spread through interaction with F-actin. Proc. Natl. Acad. Sci. USA 86, 3867-3871.[Abstract/Free Full Text]

Berryman, M., Gary, R. and Bretscher, A (1995). Ezrin oligomers are major cytoskeletal components of placental microvilli: a proposal for their involvement in cortical morphogenesis. J. Cell Biol 131, 1231-1242.[Abstract/Free Full Text]

Bretscher, A (1989). Rapid phosphorylation and reorganization of ezrin and spectrin accompany morphological changes induced in A-431 cells by epidermal growth factor. J. Cell Biol 108, 921-930.[Abstract/Free Full Text]

Bretscher, A., Gary, R. and Berryman, M (1995). Soluble ezrin purified from placenta exists as stable monomers and elongated dimers with masked C-terminal ezrin-radixin-moesin association domains. Biochemistry 34, 16830-16837.[Medline]

Chen, J., Cohn, J. A. and Manderl, L. J (1995). Dephosphorylation of ezrin as an early event in renal microvillar breakdown and anoxic injury. Proc. Natl. Acad. Sci. USA 92, 7495-7499.[Abstract/Free Full Text]

Clerc, P. and Sansonetti, P. J (1987). Entry of Shigella flexneri into HeLa cells: evidence for directed phagocytosis involving actin polymerization and myosin accumulation. Infect. Immun 55, 2681-2688.[Abstract/Free Full Text]

Crepaldi, T., Gautreau, A., Comoglio, P. M., Louvard, D. and Arpin, M (1997). Ezrin is an effector of hepatocyte growth factor-mediated migration and morphogenesis in epithelial cells. J. Cell Biol 138, 1-12.[Free Full Text]

Dehio, C., Prevost, M. C. and Sansonetti, P. J (1995). Invasion of epithelial cells by Shigella flexneri induces tyrosine phosphorylation of cortactin by a pp60c-src-mediated signalling pathway. EMBO J 14, 2471-2482.[Medline]

Franck, Z., Gary, R. and Bretscher, A (1993). Moesin, like ezrin, colocalizes with actin in the cortical cytoskeleton in cultured cells, but its expression is more variable. J. Cell Sci 105, 219-231.[Abstract]

Gary, R. and Bretscher, A (1993). Heterotypic and homotypic associations between ezrin and moesin, two putative membrane-cytoskeletal linking proteins. Proc. Natl. Acad. Sci. USA 90, 10846-10850.[Abstract/Free Full Text]

Gary, R. and Bretscher, A (1995). Ezrin self-association involves binding ofan N-terminal domain to a normally masked C-terminal domain that includes the F-actin binding site. Mol. Cell Biol 6, 1061-1075.

Gilmore, A. P. and Burridge, K (1996). Regulation of vinculin binding to talin and actin by phosphatidyl-inositol-4-5 biphosphate. Nature 381, 531-535.[Medline]

Gould, K. L., Cooper, J. A., Bretscher, A. and Hunter, T (1986). The protein-tyrosine kinase substrate, p81, is homologous to a chicken microvillar core protein. J. Cell Biol 102, 660-669.[Abstract/Free Full Text]

Hanzel, D., Reggio, H., Bretscher, A., Forte, J. G. and Mangeat, P (1991). The secretion-stimulated 80K phosphoprotein of parietal cells is ezrin, and has properties of a membrane cytoskeletal linker in the induced apical microvilli. EMBO J 10, 2363-2373.[Medline]

Helander, T. S., Carpen, O., Turunen, O., Kovanen, P. E., Vaheri, A. and Timonen, T (1996). ICAM-2 redistributed by ezrin as a target for killer cells. Nature 382, 265-268.[Medline]

Henry, M. D., Gonzalez-Agosti, C. and Salomon, F (1995). Molecular dissection of radixin: distinct and interdependent functions of the amino-and carboxy-terminal domains. J. Cell Biol 129, 1007-1022.[Abstract/Free Full Text]

Hirao, M., Sato, N., Kondo, T., Yonemura, S., Monden, M., Sasaki, T., Takai, Y., Tsukita, S. and Tsukita, S (1996). Regulation mechanism of ERM (ezrin/radixin/moesin) protein/plasma membrane association: possible involvement of phosphatidylinositol turnover and Rho-dependent signaling pathway. J. Cell Biol 135, 37-51.[Abstract/Free Full Text]

Kamps, M. P., Buss, J. E. and Sefton, B. M (1986). Rous sarcoma virus transforming protein lacking myristic acid phosphorylates known polypeptide substrates without inducing transformation. Cell 45, 105-112.[Medline]

Kimura, K., Ito, M., Amano, M., Chihara, K., Fukata, Y., Nakafuku, M., Yamamori, B., Feng, J., Nakano, T. and Okawa, K (1996). Regulation of myosin-phosphatase by Rho and Rho-associated kinase (Rho-kinase). Science 273, 245-248.[Abstract]

Kotani, H., Takaishi, K., Sasaki, T. and Takai, Y (1997). Rho regulates association of both the ERM family and vinculin with the plasma membrane in MDCK cells. Oncogene 14, 1705-1713.[Medline]

Krieg, J. and Hunter, T (1992). Identification of the two major epidermal growth factor-induced tyrosine phosphorylation sites in the microvillar core protein ezrin. J. Biol. Chem 267, 19258-19265.[Abstract/Free Full Text]

Labigne-Roussel, A. F., Lark, D., Schoolnik, G. and Falkow, S (1984). Cloning and expression of an afimbrial adhesin (AFA) responsible for P blood group-independent mannose resistant hemagglutination from a pyelonephritic E. coli strain. Infect. Immun 46, 251-259.[Abstract/Free Full Text]

Martin, M., Andreoli, C., Sahuquet, A., Montcourrier, P., Algrain, M. and Mangeat, P (1995). Ezrin NH2-terminal domain inhibits the cell extension activity of the COOH-terminal domain. J. Cell Biol 128, 1081-1093.[Abstract/Free Full Text]

Martin, M., Roy, C., Montcourrier, P., Sahuquet, A. and Mangeat, P (1997). Three determinants in ezrin are responsible for cell extension activity. Mol.Biol. Cell 8, 1543-1557.[Abstract]

Menard, R., Sansonetti, P. J. and Parsot, C (1994). The secretion of the Shigella flexneri Ipa invasins is induced by the epithelial cell and controlled by IpaB and IpaD. EMBO J 13, 5293-5302.[Medline]

Menard, R., Sansonetti, P. J., Parsot, C. and Vasselon, T (1994). Extracellular association and cytoplasmic partitioning of the IpaB and IpaC invasins of S. flexneri. Cell 79, 515-525.[Medline]

Menard, R., Dehio, C. and Sansonetti, P.J (1996). Bacterial entry into epithelial cells: the paradigm of Shigella. Trends Microbiol 6, 220-226.

Menard, R., Prevost, M. C., Gounon, P., Sansonetti, P. J. and Dehio, C (1996). The secreted Ipa complex of Shigella flexneri promotes entry into mammalian cells. Proc. Natl. Acad. Sci. USA 93, 1254-1258.[Abstract/Free Full Text]

Niggli, V., Andreoli, C., Roy, C. and Mangeat, P (1995). Identification of a phosphatidylinositol-4,5 biphosphate-binding domain in the N-terminal region of ezrin. FEBS Lett 376, 172-176.[Medline]

Pestonjamasp, K., Amieva, M. R., Strassel, C. P., Nausseef, W. M., Furthmayr, H. and Luna, E. J (1995). Moesin, ezrin and p205 are actin-binding proteins associated with neutrophil plasma membranes. Mol. Biol. Cell 6, 247-259.[Abstract]

Pfaller, W., Gstraunthaler, G. and Loidl, P (1990). Morphology of the differentiation and maturation of LLC-PK1 epithelia. J. Cell Physiol 142, 247-254.[Medline]

Roy, C., Martin, M. and Mangeat, P (1997). A dual involvement of the amino-terminal domain of ezrin in F-and G-actin binding. J. Biol. Chem 272, 20088-20095.[Abstract/Free Full Text]

Sato, N., Funayama, N., Nagafuchi, A., Yonemura, S., Tsukita, S. and Tsukita, S (1992). A gene family consisting of ezrin, radixin, and moesin. Its specific localization at actin filament /plasma membrane association sites. J. Cell Sci 103, 131-143.[Abstract/Free Full Text]

Schneider-Schaulies, J., Dunster, L. M., Schwartz-Albiez, R., Krohne, G. and ter Meulen,V (1995). Physical association of moesin and CD46 as a receptor complex for measles virus. J. Virol 69, 2248-2256.[Abstract]

Sherman, L., Sleeman, J., Herrlich, P. and Ponta, H (1994). Hyaluronate receptors: key players in growth, differentiation, migration and tumor progression. Curr. Opin. Cell Biol 6, 726-733.[Medline]

Stamenkovic, I. and Aruffo, A (1994). Hyaluronic acid receptors. Methods Enzym 245, 195-216.[Medline]

Takahashi, K., Sasaki, T., Mammoto, A., Takaishi, K., Kameyama, T., Tsukita, S., Tsukita, S. and Takai, Y (1997). Direct interaction of theRhoGDP dissociation inhibitor with ezrin/radixin/moesin initiates theactivation of the Rho small G protein. J. Biol. Chem 272, 23371-23375.[Abstract/Free Full Text]

Takeuchi, K., Sato, N., Kasahara, H., Funayama, N., Nagafuchi, A., Yonemura, S., Tsukita, S. and Tsukita, S (1994). Perturbation of cell adhesion and microvilli formation by antisense oligonucleotides to ERM family members. J. Cell Biol 125, 1371-1384.[Abstract/Free Full Text]

Tran Van Nhieu, G., Ben-Ze'ev, A. and Sansonetti, P. J (1997). Modulation of bacterial entry into epithelial cells by association between vinculin and the Shigella IpaA invasin. EMBO J 16, 2717-2729.[Medline]

Tsukita, S., Oishi, K., Sato, N., Sagara, J., Kawai, A. and Tsukita, S (1994). ERM family members as molecular linkers between the cell surface glycoprotein CD44 and actin-based cytoskeletons. J. Cell Biol 126, 391-401.[Abstract/Free Full Text]

Tsukita, S., Yonemura, S. and Tsukita, S (1997). ERM proteins: head-tailregulation of actin-plasma membrane interaction. Trends Biochem. Sci 22, 53-58.[Medline]

Tsukita, S., Yonemura, S. and Tsukita,S (1997). ERM (ezrin/radixin/moesin) family: from cytoskeleton to signal transduction. Curr. Opin. Cell Biol 9, 70-75.[Medline]

Turunen, O., Wahlstr\232m, T. and Vaheri, A (1994). Ezrin has a COOH-terminal actin-binding site that is conserved in the ezrin protein family. J. Cell Biol 126, 1445-1453.[Abstract/Free Full Text]

Vaheri, A., Carpen, O., Heiska, L., Helander, T. S., J\212\212skel\212inen, J., Majander-Nordenswan, P., Sainio, M., Timonen, T. and Turunen, O (1997). The ezrin protein family: membrane-cytoskeleton interactions and disease associations. Curr. Opin. Cell Biol 9, 659-666.[Medline]

Watarai, M., Kamata, Y., Kozaki, S. and Sasakawa, C (1997). Rho, a small GTP-binding protein, is essential for Shigella invasion of epithelial cells. J. Exp. Med 185, 281-292.[Abstract/Free Full Text]

Winckler, B., Gonzalez, C., Magendantz, M. and Salomon, F (1994). Analysis of a cortical cytoskeletal structure; a role for ezrin-radixin-moesin (ERM proteins) in the marginal band of chicken erythrocytes. J. Cell Sci 107, 2523-2534.[Abstract]

Yao, X., Cheng, L. and Forte, J. G (1996). Biochemical characterization of ezrin-actin interaction. J. Biol. Chem 271, 7224-7229.[Abstract/Free Full Text]

Yonemura, S., Nagafuchi, A., Sato, N. and Tsukita, S (1993). Concentration of an integral membrane protein, CD43 (leukosialin, sialophorin), in the cleavage furrow through the interaction of its cytoplasmic domain with actin-based cytoskeletons. J. Cell Biol 120, 437-449.[Abstract/Free Full Text]




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