spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Sechi, A. S.
Right arrow Articles by Wehland, J.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Sechi, A. S.
Right arrow Articles by Wehland, J.
Achiriloaie, M., Barylko, B. and Albanesi, J. P (1999). Essential role of the dynamin pleckstrin homology domain in receptor-mediated endocytosis. Mol. Cell. Biol 19, 1410-1415.[Abstract/Free Full Text]

Aktories, K. and Hall, A (1989). Botulinum ADP-ribosyltransferase C3: a new tool to study low molecular weight GTP-binding proteins. Trends Pharmacol. Sci 10, 415-418.[Medline]

Anderson, R. A. and Marchesi, V. T (1985). Regulation of the association of membrane skeletal protein 4.1 with glycophorin by a polyphosphoinositide. Nature 318, 295-298.[Medline]

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

Bakolitsa, C., de Pereda, J. M., Bagshaw, C. R., Critchley, D. R. and Liddington, R. C (1999). Crystal structure of the vinculin tail suggests a pathway for activation. Cell 99, 603-613.[Medline]

Bear, J. E., Loureiro, J. J., Libova, I., Fassler, R., Wehland, J. and Gertler,F, B (2000). Negative regulation of fibroblast motility by Ena/VASP proteins. Cell 101, 717-728.[Medline]

Bell, R. M. and Burns, D. J (1991). Lipid activation of protein kinase C. J. Biol. Chem 266, 4661-4664.[Free Full Text]

Bishop, A. L. and Hall, A (2000). Rho GTPases and their effector proteins. Biochem. J 348, 241-255.

Bretscher, A., Reczek, D. and Berryman, M (1997). Ezrin: a protein requiring conformational activation to link microfilaments to the plasma membrane in the assembly of cell surface structures. J. Cell Sci 110, 3011-3018.[Abstract]

Bretscher, A (1999). Regulation of cortical structure by the ezrin-radixin-moesin protein family. Curr. Opin. Cell Biol 11, 109-116.[Medline]

Burridge. K and Chrzanowska-Wodnicka, M (1996). Focal adhesions, contractility, and signaling. Annu. Rev. Cell Dev. Biol 12, 463-518.[Medline]

Cerione, R (1998). PIP2: activator... or terminator of small G proteins?. Trends Biochem. Sci 23, 100-.[Medline]

Chabre, M., Antonny, B. and Paris, S (1998). PIP2: activator... or terminator of small G proteins?. Trends Biochem. Sci 23, 98-99.[Medline]

Chaudhary, A., Chen, J., Gu, Q. M., Witke, W., Kwiatkowski, D. J. and Prestwich, G. D (1998). Probing the phosphoinositide 4,5-bisphosphate binding site of human profilin I. Chem. Biol 5, 273-281.[Medline]

Chong, L. D., Traynor-Kaplan, A., Bokoch, G. M. and Schwartz, M. A (1994). The small GTP-binding protein Rho regulates a phosphatidylinositol 4-phosphate 5-kinase in mammalian cells. Cell 79, 507-513.[Medline]

Chuang, T. H., Bohl, B. P. and Bokoch, G. M (1993). Biologically active lipids are regulators of Rac. GDI complexation. J. Biol. Chem 268, 26206-26211.[Abstract/Free Full Text]

Critchley, D. R (2000). Focal adhesions \320 the cytoskeletal connection. Curr. Opin. Cell Biol 12, 133-139.[Medline]

Czech, M. P (2000). PIP2 and PIP3: complex roles at the cell surface. Cell 100, 603-606.[Medline]

Derry, J. M., Ochs, H. D. and Francke, U (1994). Isolation of a novel gene mutated in Wiskott-Aldrich Syndrome. Cell 78, 635-644.[Medline]

Donaldson, J. G. and Jackson, C. L (2000). Regulators and effectors of the ARF GTPases. Curr. Opin. Cell Biol 12, 475-482.[Medline]

Eichinger, L. and Schleicher, M (1992). Characterization of actin-and lipid-binding domains in severin, a Ca(2+)-dependent F-actin fragmenting protein. Biochemistry 31, 4779-4787.[Medline]

Fukami, K., Furuhashi, K., Inagaki, M., Endo, T., Hatano, S. and Takenawa T (1992). Requirement of phosphatidylinositol 4,5-bisphosphate for alpha-actinin function. Nature 359, 150-152.[Medline]

Fukami, K., Sawada, N., Endo, T. and Takenawa T (1996). Identification of a phosphatidylinositol 4,5-bisphosphate-binding site in chicken skeletal muscle alpha-actinin. J. Biol. Chem 271, 2646-2650.[Abstract/Free Full Text]

Furuhashi, K., Inagaki, M., Hatano, S., Fukami, K. and Takenawa T (1992). Inositol phospholipid-induced suppression of F-actin-gelating activity of smooth muscle filamin. Biochem. Biophys. Res. Commun 184, 1261-1265.[Medline]

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

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

Hartwig, J. H. and Kwiatkowski, D. J (1991). Actin-binding proteins. Curr. Opin. Cell Biol 3, 87-97.[Medline]

Hartwig, J. H., Bokoch, G. M., Carpenter, C. L., Janmey, P. A., Taylor, L. A., Toker, A. and Stossel, T. P (1995). Thrombin receptor ligation and activated Rac uncap actin filament barbed ends through phosphoinositide synthesis in permeabilized human platelets. Cell 82, 643-653.[Medline]

Haus, U., Hartmann, H., Trommler, P., Noegel, A. A. and Schleicher, M (1991). F-actin capping by cap32/34 requires heterodimeric conformation and can be inhibited with PIP2. Biochem. Biophys. Res. Commun 181, 833-839.[Medline]

Heise, H., Bayerl, T., Isenberg, G. and Sackmann, E (1991). Human platelet P-235, a talin-like actin binding protein, binds selectively to mixed lipid bilayers. Biochim. Biophys. Acta 1061, 121-131.[Medline]

Heiska, L., Alfthan, K., Gronholm, M., Vilja, P., Vaheri, A. and Carpen, O (1998). Association of ezrin with intercellular adhesion molecule-1 and-2 (ICAM-1 and ICAM-2). Regulation by phosphatidylinositol 4,5-bisphosphate. J. Biol. Chem 273, 21893-21900.[Abstract/Free Full Text]

Heiss, S. G. and Cooper, J. A (1991). Regulation of CapZ, an actin capping protein of chicken muscle, by anionic phospholipids. Biochemistry 30, 8753-8758.[Medline]

Henry, M. D., Gonzalez Agosti, C. and Solomon, 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]

Hofmann, A., Eichinger, L., Andre, E., Rieger, D. and Schleicher M (1992). Cap100, a novel phosphatidylinositol 4,5-bisphosphate-regulated protein that caps actin filaments but does not nucleate actin assembly. Cell Motil. Cytoskel 23, 133-144.[Medline]

Honda, A., Nogami, M., Yokozeki, T., Yamazaki, M., Nakamura, H., Watanabe, H., Kawamoto, K., Nakayama, K., Morris, A. J., Frohman, M. A. and Kanaho, Y (1999). Phosphatidylinositol 4-phosphate 5-kinase alpha is a downstream effector of the small G protein ARF6 in membrane ruffle formation. Cell 99, 521-532.[Medline]

Hoover, K. B. and Bryant, P. J (2000). The genetics of the protein 4. 1 family: organizers of the membrane and cytoskeleton. Curr. Opin. Cell Biol 12, 229-234.[Medline]

Hsuan, J. J., Minogue, S. and dos Santos, M (1998). Phosphoinositide 4-and 5-kinases and the cellular roles of phosphatidylinositol 4,5-bisphosphate. Advan. Cancer Res 74, 167-216.[Medline]

Huttelmaier, S., Mayboroda, O., Harbeck, B., Jarchau, T., Jockusch, B. M. and Rudiger, M (1998). The interaction of the cell-contact proteins VASP and vinculin is regulated by phosphatidylinositol-4,5-bisphosphate. Curr. Biol 8, 479-488.[Medline]

Kahn, R. A (1998). PIP2: activator...or terminator of small G proteins?. Trends Biochem. Sci 23, 99-.

Kam, J. L., Miura, K., Jackson, T. R., Gruschus, J., Roller, P., Stauffer, S., Clark, J., Aneja, R. and Randazzo, P. A (2000). Phosphoinositide-dependent activation of the ADP-ribosylation factor GTPase-activating protein ASAP1. Evidence for the pleckstrin homology domain functioning as an allosteric site. J. Biol. Chem 275, 9653-3663.[Abstract/Free Full Text]

Kim, A. S., Kakalis, L. T., Abdul-Manan, N., Liu, G. A. and Rosen, M. K (2000). Autoinhibition and activation mechanisms of the Wiskott-Aldrich syndrome protein. Nature 404, 151-158.[Medline]

Kolluri, R., Tolias, K. F., Carpenter, C. L., Rosen, F. S. and Kirchhausen, T (1996). Direct interaction of the Wiskott-Aldrich syndrome protein with the GTPase Cdc42. Proc. Nat. Acad. Sci. USA 93, 5615-5618.[Abstract/Free Full Text]

Kozma, R., Ahmed, S., Best, A. and Lim, L (1995). The Ras-related protein Cdc42Hs and bradykinin promote formation of peripheral actin microspikes and filopodia in Swiss 3T3 fibroblasts. Mol. Cell. Biol 15, 1942-1952.[Abstract]

Krause, M., Sechi, A. S., Konradt, M., Monner, D., Gertler, F. B. and Wehland, J (2000). Fyn-binding protein (Fyb)/SLP-76-associated protein (SLAP), Ena/vasodilator-stimulated phosphoprotein (VASP) proteins and the Arp2/3 complex link T cell receptor (TCR) signaling to the actin cytoskeleton. J. Cell Biol 149, 181-194.[Abstract/Free Full Text]

Imai, K., Nonoyama, S., Miki, H., Morio, T., Fukami, K., Zhu, Q., Aruffo, A., Ochs, H. D., Yata, J. and Takenawa, T (1999). The pleckstrin homology domain of the Wiskott-Aldrich syndrome protein is involved in the organization of actin cytoskeleton. Clin. Immunol 92, 128-137.

Janmey, P. A. and Stossel, T. P (1987). Modulation of gelsolin function by phosphatidylinositol 4,5-bisphosphate. Nature 325, 362-364.[Medline]

Janmey, P. A. and Matsudaira, P. T (1988). Functional comparison of villin and gelsolin. Effects of Ca2+, KCl, and polyphosphoinositides. J. Biol. Chem 263, 16738-16743.[Abstract/Free Full Text]

Janmey, P. A., Lamb, J., Allen, P. G. and Matsudaira P. T (1992). Phosphoinositide-binding peptides derived from the sequences of gelsolin and villin. J. Biol. Chem 267, 11818-11823.[Abstract/Free Full Text]

Jenkins, G. H., Fisette, P. L. and Anderson, R. A (1994). Type I phosphatidylinositol 4-phosphate 5-kinase isoforms are specifically stimulated by phosphatidic acid. J. Biol. Chem 269, 11547-11554.[Abstract/Free Full Text]

Johnson, R. P. and Craig, S. W (1995). F-actin binding site masked by the intramolecular association of vinculin head and tail domains. Nature 373, 261-264.[Medline]

Johnson, R. P., Niggli, V., Durrer, P. and Craig, S. W (1998). A conserved motif in the tail domain of vinculin mediates association with and insertion into acidic phospholipid bilayers. Biochemistry 37, 10211-10222.[Medline]

Johnson, R. P. and Craig, S. W (2000). Actin activates a cryptic dimerization potential of the vinculin tail domain. J. Biol. Chem 275, 95-105.[Abstract/Free Full Text]

Jost, M., Simpson, F., Kavran, J. M., Lemmon, M. A. and Schmid, S. L (1998). Phosphatidylinositol-4,5-bisphosphate is required for endocytic coated vesicle formation. Curr. Biol 8, 1399-402.[Medline]

Lassing, I. and Lindberg, U (1985). Specific interaction between phosphatidylinositol 4,5-bisphosphate and profilactin. Nature 314, 472-474.[Medline]

Lassing, I. and Lindberg, U (1988). Specificity of the interaction between phosphatidylinositol 4,5-bisphosphate and the profilin:actin complex. J. Cell Biochem 37, 255-267.[Medline]

Lassing, I. and Lindberg, U (1988). Evidence that the phosphatidylinositol cycle is linked to cell motility. Exp. Cell Res 174, 1-15.[Medline]

Lassing, I., Lindberg, U., Matsui, T., Yonemura, S., Tsukita, S. and Tsukita, S (1999). Activation of ERM proteins in vivo by Rho involves phosphatidyl-inositol 4-phosphate 5-kinase and not ROCK kinases. Curr. Biol 9, 1259-1262.[Medline]

Laurent, V., Loisel, T. P., Harbeck, B., Wehman, A., Gr\232be, L., Jockusch, B. M., Wehland, J., Gertler, F. B. and M.-F. Carlier (1999). Role of proteins of the Ena/VASP family in actin-based motility of Listeria monocytogenes. J. Cell Biol 144, 1245-1258.[Abstract/Free Full Text]

Laux, T., Fukami, K., Thelen, M., Golub, T., Frey, D. and Caroni, P (2000). GAP43, MARCKS, and CAP23 modulate PI(4,5)P(2) at plasmalemmal rafts, and regulate cell cortex actin dynamics through a common mechanism. J. Cell Biol 149, 1455-1472.[Abstract/Free Full Text]

Lee, A., Frank, D. W., Marks, M. S. and Lemmon, M. A (1999). Dominant-negative inhibition of receptor-mediated endocytosis by a dynamin-1 mutant with a defective pleckstrin homology domain. Curr. Biol 9, 261-264.[Medline]

Legg, J. W. and Isacke, C. M (1998). Identification and functional analysis of the ezrin-binding site in the hyaluronan receptor, CD44. Curr. Biol 8, 705-708.[Medline]

Ma, L., Cantley, L. C., Janmey, P. A. and Kirschner, M. W (1998). Corequirement of specific phosphoinositides and small GTP-binding protein Cdc42 in inducing actin assembly in Xenopus egg extracts. J. Cell Biol 140, 1125-1136.[Abstract/Free Full Text]

Machesky, L. M. and Insall, R. H (1998). Scar1 and the related Wiskott-Aldrich syndrome protein, WASP, regulate the actin cytoskeleton through the Arp2/3 complex. Curr. Biol 8, 1347-1356.[Medline]

Machesky, L. M., Mullins, R. D., Higgs, H. N., Kaiser, D. A., Blanchoin, L., May, R. C., Hall, M. E. and Pollard, T. D (1999). Scar, a WASp-related protein, activates nucleation of actin filaments by the Arp2/3 complex. Proc. Nat. Acad. Sci 96, 3739-3744.[Abstract/Free Full Text]

Mackay, D. J., Esch, F., Furthmayr, H. and Hall, A (1997). Rho-and rac-dependent assembly of focal adhesion complexes and actin filaments in permeabilized fibroblasts: an essential role for ezrin/radixin/moesin proteins. J. Cell Biol 138, 927-938.[Abstract/Free Full Text]

Majerus, P. W., Ross, T. S., Cunningham, T. W., Caldwell, K. K., Jefferson, A. B. and Bansal, V. S (1990). Recent insights in phosphatidylinositol signaling. Cell 63, 459-465.[Medline]

Matsui, T., Maeda, M., Doi, Y., Yonemura, S., Amano, M., Kaibuchi, K., Tsukita, S. and Tsukita, S (1998). Rho-kinase phosphorylates COOH-terminal threonines of ezrin/radixin/moesin (ERM) proteins and regulates their head-to-tail association. J. Cell Biol 140, 647-657.[Abstract/Free Full Text]

Matsui, T., Yonemura, S., Tsukita, S. and Tsukita, S (1999). Activation of ERM proteins in vivo by Rho involves phosphatidyl-inositol 4-phosphate 5-kinase and not ROCK kinases. Curr. Biol 9, 1259-1262.

McGough, A (1998). F-actin-binding proteins. Curr. Opin. Struct. Biol 8, 166-176.[Medline]

McNamee, H. P., Ingber, D. E. and Schwartz, M. A (1993). Adhesion to fibronectin stimulates inositol lipid synthesis and enhances PDGF-induced inositol lipid breakdown. J. Cell Biol 121, 673-678.[Abstract/Free Full Text]

McNamee, H. P., Liley, H. G. and Ingber, D. E (1996). Integrin-dependent control of inositol lipid synthesis in vascular endothelial cells and smooth muscle cells. Exp. Cell Res 224, 116-122.[Medline]

Miki, H., Miura, K. and Takenawa, T (1996). N-WASP, a novel actin-depolymerizing protein, regulates the cortical cytoskeletal rearrangement in a PIP2-dependent manner downstream of tyrosine kinases. EMBO J 15, 5326-5335.[Medline]

Miki, H., Sasaki, T., Takai, Y. and Takenawa, T (1998). Induction offilopodium formation by a WASP-related actin-depolymerizing protein N-WASP. Nature 391, 93-96.[Medline]

Missy, K., Van Poucke, V., Raynal, P., Viala, C., Mauco, G., Plantavid, M., Chap, H. and Payrastre, B (1998). Lipid products of phosphoinositide 3-kinase interact with Rac1 GTPase and stimulate GDP dissociation. J. Biol. Chem 273, 30279-30286.[Abstract/Free Full Text]

Niebuhr, K., Ebel, F., Frank, R., Reinhard, M., Domann, E., Carl, U. D., Walter, U., Gertler, F. B., Wehland, J. and Chakraborty, T (1997). A novel proline-rich motif present in ActA of Listeria monocytogenes and cytoskeletal proteins is the ligand for the EVH1 domain, a protein module present in the Ena/VASP family. EMBO J 16, 5433-5444.[Medline]

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

Nobes, C. D. and Hall, A (1999). Rho GTPases control polarity, protrusion, and adhesion during cell movement. J. Cell Biol 144, 1235-1244.[Abstract/Free Full Text]

Ochs, H. D., Slichter, S. J., Harker, L. A., Von Behrens, W. E., Clark, R. A. and Wedgwood, R. J (1980). The Wiskott-Aldrich syndrome: studies of lymphocytes, granulocytes, and platelets. Blood 55, 243-252.[Free Full Text]

Oude Weernink, P. A., Schulte, P., Guo, Y., Wetzel, J., Amano, M., Kaibuchi, K., Haverland, S., Voss, M., Schmidt, M., Mayr, G. W. and Jakobs, K. H (2000). Stimulation of phosphatidylinositol-4-phosphate 5-kinase by Rho-kinase. J. Biol. Chem 275, 10168-10174.[Abstract/Free Full Text]

Pearson, M. A., Reczek, D., Bretscher, A. and Karplus, P. A (2000). Structure of the ERM protein moesin reveals the FERM domain fold masked by an extended actin binding tail domain. Cell 101, 259-.[Medline]

Pestonjamasp, K., Amieva, M. R., Strassel, C. P., Nauseef, 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]

Raucher, D., Stauffer, T., Chen, W., Shen, K., Guo, S., York, J. D., Sheetz, M. P. and Meyer, T (2000). Phosphatidylinositol 4,5-bisphosphate functions as a second messenger that regulates cytoskeleton-plasma membrane adhesion. Cell 100, 221-228.[Medline]

Rebecchi, M. J. and Scarlata, S (1998). Pleckstrin homology domains: a common fold with diverse functions. Annu. Rev. Biophys. Biomol. Struct 27, 503-528.[Medline]

Remold-O'Donnell, E., Rosen, F. S. and Kenney, D. M (1996). Defects in Wiskott-Aldrich syndrome blood cells. Blood 87, 2621-2631.[Free Full Text]

Ren, X. D., Bokoch, G. M., Traynor-Kaplan, A., Jenkins, G. H., Anderson, R. A. and Schwartz, M. A (1996). Physical association of the small GTPase Rho with a 68-kDa phosphatidylinositol 4-phosphate 5-kinase in Swiss 3T3 cells. Mol. Biol. Cell 7, 435-442.[Abstract]

Ridley, A. J. and Hall, A (1992). The small GTP-binding protein rho regulates the assembly of focal adhesions and actin stress fibers in response to growth factors. Cell 70, 389-399.[Medline]

Ridley, A. J., Paterson, H. F., Johnston, C. L., Diekmann, D. and Hall, A (1992). The small GTP-binding protein rac regulates growth factor-induced membrane ruffling. Cell 70, 401-410.[Medline]

Rohatgi, R., Ma, L., Miki, H., Lopez, M., Kirchhausen, T., Takenawa, T. and Kirschner, M. W (1999). The interaction between N-WASP and the Arp2/3 complex links Cdc42-dependent signals to actin assembly. Cell 97, 221-231.[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]

Rozelle, A. L., Machesky, L. M., Yamamoto, M., Driessens, M. H., Insall, R. H., Roth, M. G., Luby-Phelps, K., Marriott, G., Hall, A. and Yin, H. L (2000). Phosphatidylinositol 4,5-bisphosphate induces actin-based movement of raft-enriched vesicles through WASP-Arp2/3. Curr. Biol 10, 311-320.[Medline]

Sakisaka, T., Itoh, T., Miura, K. and Takenawa, T (1997). Phosphatidylinositol 4,5-bisphosphate phosphatase regulates the rearrangement of actin filaments. Mol. Cell Biol 17, 3841-3849.[Abstract]

Sakurai, T., Kurokawa, H. and Nonomura Y (1991). The Ca2(+)-dependent actin filament-severing activity of 74-kDa protein (adseverin) resides in its NH2-terminal half. J. Biol. Chem 266, 4581-4585.[Abstract/Free Full Text]

Schmidt, A. and Hall, M. N (1998). Signaling to the actin cytoskeleton. Annu. Rev. Cell Dev. Biol 14, 305-38.[Medline]

Serrador, J. M., Alonso-Lebrero, J. L., del Pozo, M. A., Furthmayr, H.,Schwartz-Albiez, R., Calvo, J., Lozano, F. and Sanchez-Madrid, F (1997). Moesin interacts with the cytoplasmic region of intercellular adhesion molecule-3 and is redistributed to the uropod of T lymphocytes during cell polarization. J. Cell Biol 138, 1409-1423.[Abstract/Free Full Text]

Shaw, R. J., Henry, M., Solomon, F. and Jacks, T (1998). RhoA-dependent phosphorylation and relocalization of ERM proteins into apical membrane/actin protrusions in fibroblasts. Mol. Biol. Cell 9, 403-419.[Abstract/Free Full Text]

Shibasaki, Y., Ishihara, H., Kizuki, N., Asano, T., Oka, Y. and Yazaki, Y (1997). Massive actin polymerization induced by phosphatidylinositol-4-phosphate 5-kinase in vivo. J. Biol. Chem 272, 7578-7581.[Abstract/Free Full Text]

Smith, G. A., Theriot, J. A. and Portnoy, D. A (1996). The tandem repeat domain in the Listeria monocytogenes ActA protein controls the rate of actin-based motility, the percentage of moving bacteria, and the localization of Vasodilator-stimulated Phosphoprotein and profilin. J. Cell Biol 135, 647-660.[Abstract/Free Full Text]

Sohn, R. H., Chen, J., Koblan, K. S., Bray, P. F. and Goldschmidt-Clermont, P. J (1995). Localization of a binding site for phosphatidylinositol 4,5-bisphosphate on human profilin. J. Biol. Chem 270, 21114-21120.[Abstract/Free Full Text]

Steimle, P. A., Hoffert, J. D., Adey, N. B. and Craig, S. W (1999). Polyphosphoinositides inhibit the interaction of vinculin with actin filaments. J. Biol. Chem 274, 18414-18420.[Abstract/Free Full Text]

Stossel, T. P (1993). On the crawling of animal cells. Science 260, 1086-1094.[Abstract/Free Full Text]

Symons, M., Derry, J. M. J., Karlak, B., Jiang, S., Lemahieu, V., McCormick, F., Francke, U. and Abo, A (1996). Wiskott\320Aldrich syndrome protein, a novel effector for the GTPase CDC42Hs, is implicated in actin polymerization. Cell 84, 723-734.[Medline]

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

Tall, E. G., Spector, I., Pentyala, S. N., Bitter, I. and Rebecchi, M. J (2000). Dynamics of phosphatidylinositol 4,5-bisphosphate in actin-rich structures. Curr. Biol 10, 743-746.[Medline]

Tempel, M., Goldmann, W. H., Dietrich, C., Niggli, V., Weber, T., Sackmann, E. and Isenberg, G (1994). Insertion of filamin into lipid membranes examined by calorimetry, the film balance technique, and lipid photolabeling. Biochemistry 33, 12565-12572.[Medline]

Tempel, M., Goldmann, W. H., Isenberg, G. and Sackmann, E (1995). Interaction of the 47-kDa talin fragment and the 32-kDa vinculin fragmentwith acidic phospholipids: a computer analysis. Biophys. J 69, 228-241.[Abstract/Free Full Text]

Terada, N., Fujii, Y. and Ohno, S (1996). Three-dimensional ultrastructure of in situ membrane skeletons in human erythrocytes by quick-freezing and deep-etching method. Histol. Histopathol 11, 787-800.[Medline]

Tolias, K. F., Couvillon, A. D., Cantley, L. C. and Carpenter, C. L (1998). Characterization of a Rac1-and RhoGDI-associated lipid kinase signaling complex. Mol. Cell. Biol 18, 762-770.[Abstract/Free Full Text]

Tolias, K. F., Hartwig, J. H., Ishihara, H., Shibasaki, Y., Cantley, L. C. and Carpenter, C. L (2000). Type Ialpha phosphatidylinositol-4-phosphate 5-kinase mediates Rac-dependent actin assembly. Curr. Biol 10, 153-156.[Medline]

Turunen, O., Wahlstrom, 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]

Vallis, Y., Wigge, P., Marks, B., Evans, P. R. and McMahon, H. T (1999). Importance of the pleckstrin homology domain of dynamin in clathrin-mediated endocytosis. Curr. Biol 9, 257-260.[Medline]

Van Troys, M., Vandekerckhove, J. and Ampe, C (1999). Structural modules in actin-binding proteins: towards a new classification. Biochim. Biophys. Acta 1448, 323-348.[Medline]

Weekes, J., Barry, S. T. and Critchley, D. R (1996). Acidic phospholipids inhibit the intramolecular association between the N-and C-terminal regions of vinculin, exposing actin-binding and protein kinase C phosphorylation sites. Biochem. J 314, 827-832.

Yonemura, S., Hirao, M., Doi, Y., Takahashi, N., Kondo, T., Tsukita, S. and Tsukita S (1998). Ezrin/Radixin/Moesin (ERM) proteins bind to a positively charged amino acid cluster in the juxta-membrane cytoplasmic domain of CD44, CD43, and ICAM-2. J. Cell Biol 140, 885-895.[Abstract/Free Full Text]

Yonezawa, N., Nishida, E., Iida, K., Yahara, I. and Sakai, H (1990). Inhibition of the interactions of cofilin, destrin, and deoxyribonuclease I with actin by phosphoinositides. J. Biol. Chem 265, 8382-8386.[Abstract/Free Full Text]

Yonezawa, N., Homma, Y., Yahara, I., Sakai, H. and Nishida, E (1991). A short sequence responsible for both phosphoinositide binding and actin binding activities of cofilin. J. Biol. Chem 266, 17218-17221.[Abstract/Free Full Text]

Yu, F. X., Johnston, P. A., Sudhof, T. C. and Yin, H. L (1990). gCap39, a calcium ion-and polyphosphoinositide-regulated actin capping protein. Science 250, 1413-1415.[Abstract/Free Full Text]

Yu, F. X., Sun, H. Q., Janmey, P. A. and Yin, H. L (1992). Identification of a polyphosphoinositide-binding sequence in an actin monomer-binding domain of gelsolin. J. Biol. Chem 267, 14616-14621.[Abstract/Free Full Text]

Zheng, Y., Glaven, J. A., Wu, W. J. and Cerione, R. A (1996). Phosphatidylinositol 4,5-bisphosphate provides an alternative to guanine nucleotide exchange factors by stimulating the dissociation of GDP from Cdc42Hs. J. Biol. Chem 271, 23815-23819.[Abstract/Free Full Text]




This article has been cited by other articles:


Home page
Am. J. Physiol. Renal Physiol.Home page
M. G. Marquez, M. del Carmen Fernandez-Tome, N. O. Favale, L. G. Pescio, and N. B. Sterin-Speziale
Bradykinin modulates focal adhesions and induces stress fiber remodeling in renal papillary collecting duct cells
Am J Physiol Renal Physiol, March 1, 2008; 294(3): F603 - F613.
[Abstract] [Full Text] [PDF]


Home page
Cancer Res.Home page
L. Fu, Y.-R. Qin, D. Xie, L. Hu, D. L. Kwong, G. Srivastava, S. W. Tsao, and X.-Y. Guan
Characterization of a Novel Tumor-Suppressor Gene PLC{delta}1 at 3p22 in Esophageal Squamous Cell Carcinoma
Cancer Res., November 15, 2007; 67(22): 10720 - 10726.
[Abstract] [Full Text] [PDF]


Home page
Biophys. JHome page
I. Titushkin and M. Cho
Modulation of Cellular Mechanics during Osteogenic Differentiation of Human Mesenchymal Stem Cells
Biophys. J., November 15, 2007; 93(10): 3693 - 3702.
[Abstract] [Full Text] [PDF]


Home page
Eukaryot CellHome page
N. Wender, E. Villalobo, and D. Mirelman
EhLimA, a Novel LIM Protein, Localizes to the Plasma Membrane in Entamoeba histolytica
Eukaryot. Cell, September 1, 2007; 6(9): 1646 - 1655.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
T. Y. El Sayegh, P. D. Arora, K. Ling, C. Laschinger, P. A. Janmey, R. A. Anderson, and C. A. McCulloch
Phosphatidylinositol-4,5 Bisphosphate Produced by PIP5KI{gamma} Regulates Gelsolin, Actin Assembly, and Adhesion Strength of N-Cadherin Junctions
Mol. Biol. Cell, August 1, 2007; 18(8): 3026 - 3038.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
L. Zhou, S. J. Martinez, M. Haber, E. V. Jones, D. Bouvier, G. Doucet, A. T. Corera, E. A. Fon, A. H. Zisch, and K. K. Murai
EphA4 Signaling Regulates Phospholipase C{gamma}1 Activation, Cofilin Membrane Association, and Dendritic Spine Morphology
J. Neurosci., May 9, 2007; 27(19): 5127 - 5138.
[Abstract] [Full Text] [PDF]


Home page
BloodHome page
N. Lehman, M. Di Fulvio, N. McCray, I. Campos, F. Tabatabaian, and J. Gomez-Cambronero
Phagocyte cell migration is mediated by phospholipases PLD1 and PLD2
Blood, November 15, 2006; 108(10): 3564 - 3572.
[Abstract] [Full Text] [PDF]


Home page
FASEB J.Home page
S. Kim, H. Kim, B. Chang, N. Ahn, S. Hwang, G. Di Paolo, and S. Chang
Regulation of transferrin recycling kinetics by PtdIns[4,5]P2 availability
FASEB J, November 1, 2006; 20(13): 2399 - 2401.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
K. Gaus, S. Le Lay, N. Balasubramanian, and M. A. Schwartz
Integrin-mediated adhesion regulates membrane order
J. Cell Biol., August 28, 2006; 174(5): 725 - 734.
[Abstract] [Full Text] [PDF]


Home page
BloodHome page
H. Schulze, M. Korpal, J. Hurov, S.-W. Kim, J. Zhang, L. C. Cantley, T. Graf, and R. A. Shivdasani
Characterization of the megakaryocyte demarcation membrane system and its role in thrombopoiesis
Blood, May 15, 2006; 107(10): 3868 - 3875.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
A. S. Ada-Nguema, H. Xenias, M. P. Sheetz, and P. J. Keely
The small GTPase R-Ras regulates organization of actin and drives membrane protrusions through the activity of PLC{epsilon}
J. Cell Sci., April 1, 2006; 119(7): 1307 - 1319.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. A. Chellaiah
Regulation of Actin Ring Formation by Rho GTPases in Osteoclasts
J. Biol. Chem., September 23, 2005; 280(38): 32930 - 32943.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
S. F. Bairstow, K. Ling, and R. A. Anderson
Phosphatidylinositol Phosphate Kinase Type I{gamma} Directly Associates with and Regulates Shp-1 Tyrosine Phosphatase
J. Biol. Chem., June 24, 2005; 280(25): 23884 - 23891.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
S. Linder and P. Kopp
Podosomes at a glance
J. Cell Sci., May 15, 2005; 118(10): 2079 - 2082.
[Full Text] [PDF]


Home page
J. Cell Sci.Home page
I. Chandrasekar, T. E. B. Stradal, M. R. Holt, F. Entschladen, B. M. Jockusch, and W. H. Ziegler
Vinculin acts as a sensor in lipid regulation of adhesion-site turnover
J. Cell Sci., April 1, 2005; 118(7): 1461 - 1472.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. Tapp, I. M. Al-Naggar, E. G. Yarmola, A. Harrison, G. Shaw, A. S. Edison, and M. R. Bubb
MARCKS Is a Natively Unfolded Protein with an Inaccessible Actin-binding Site: EVIDENCE FOR LONG-RANGE INTRAMOLECULAR INTERACTIONS
J. Biol. Chem., March 18, 2005; 280(11): 9946 - 9956.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
S. Bodin, C. Soulet, H. Tronchere, P. Sie, C. Gachet, M. Plantavid, and B. Payrastre
Integrin-dependent interaction of lipid rafts with the actin cytoskeleton in activated human platelets
J. Cell Sci., February 15, 2005; 118(4): 759 - 769.
[Abstract] [Full Text] [PDF]


Home page
J. Leukoc. Biol.Home page
J. A. Swanson and A. D. Hoppe
The coordination of signaling during Fc receptor-mediated phagocytosis
J. Leukoc. Biol., December 1, 2004; 76(6): 1093 - 1103.
[Abstract] [Full Text] [PDF]


Home page
Biophys. JHome page
J. F. Ellena, J. Moulthrop, J. Wu, M. Rauch, S. Jaysinghne, J. D. Castle, and D. S. Cafiso
Membrane Position of a Basic Aromatic Peptide that Sequesters Phosphatidylinositol 4,5 Bisphosphate Determined by Site-Directed Spin Labeling and High-Resolution NMR
Biophys. J., November 1, 2004; 87(5): 3221 - 3233.
[Abstract] [Full Text] [PDF]


Home page
Am. J. Physiol. Cell Physiol.Home page
H. R. Kim, M. Hoque, and C.-M. Hai
Cholinergic receptor-mediated differential cytoskeletal recruitment of actin- and integrin-binding proteins in intact airway smooth muscle
Am J Physiol Cell Physiol, November 1, 2004; 287(5): C1375 - C1383.
[Abstract] [Full Text] [PDF]


Home page
Mol. Cell. Biol.Home page
S. Huang, L. Lifshitz, V. Patki-Kamath, R. Tuft, K. Fogarty, and M. P. Czech
Phosphatidylinositol-4,5-Bisphosphate-Rich Plasma Membrane Patches Organize Active Zones of Endocytosis and Ruffling in Cultured Adipocytes
Mol. Cell. Biol., October 15, 2004; 24(20): 9102 - 9123.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
K. Uhlenbrock, A. Eberth, U. Herbrand, N. Daryab, P. Stege, F. Meier, P. Friedl, J. G. Collard, and M. R. Ahmadian
The RacGEF Tiam1 inhibits migration and invasion of metastatic melanoma via a novel adhesive mechanism
J. Cell Sci., September 15, 2004; 117(20): 4863 - 4871.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
H. Watanabe, T. Yokozeki, M. Yamazaki, H. Miyazaki, T. Sasaki, T. Maehama, K. Itoh, M. A. Frohman, and Y. Kanaho
Essential Role for Phospholipase D2 Activation Downstream of ERK MAP Kinase in Nerve Growth Factor-stimulated Neurite Outgrowth from PC12 Cells
J. Biol. Chem., September 3, 2004; 279(36): 37870 - 37877.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
U. Rescher, D. Ruhe, C. Ludwig, N. Zobiack, and V. Gerke
Annexin 2 is a phosphatidylinositol (4,5)-bisphosphate binding protein recruited to actin assembly sites at cellular membranes
J. Cell Sci., July 15, 2004; 117(16): 3473 - 3480.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
G. Sekerkova, L. Zheng, P. A. Loomis, B. Changyaleket, D. S. Whitlon, E. Mugnaini, and J. R. Bartles
Espins Are Multifunctional Actin Cytoskeletal Regulatory Proteins in the Microvilli of Chemosensory and Mechanosensory Cells
J. Neurosci., June 9, 2004; 24(23): 5445 - 5456.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. J. Hayes, C. J. Merrifield, D. Shao, J. Ayala-Sanmartin, C. D. Schorey, T. P. Levine, J. Proust, J. Curran, M. Bailly, and S. E. Moss
Annexin 2 Binding to Phosphatidylinositol 4,5-Bisphosphate on Endocytic Vesicles Is Regulated by the Stress Response Pathway
J. Biol. Chem., April 2, 2004; 279(14): 14157 - 14164.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
J. Kwik, S. Boyle, D. Fooksman, L. Margolis, M. P. Sheetz, and M. Edidin
Membrane cholesterol, lateral mobility, and the phosphatidylinositol 4,5-bisphosphate-dependent organization of cell actin
PNAS, November 25, 2003; 100(24): 13964 - 13969.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
S. R. da Costa, E. Sou, J. Xie, F. A. Yarber, C. T. Okamoto, M. Pidgeon, M. M. Kessels, A. K. Mircheff, J. E. Schechter, B. Qualmann, et al.
Impairing Actin Filament or Syndapin Functions Promotes Accumulation of Clathrin-coated Vesicles at the Apical Plasma Membrane of Acinar Epithelial Cells
Mol. Biol. Cell, November 1, 2003; 14(11): 4397 - 4413.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Biol.Home page
C. Xu, J. Watras, and L. M. Loew
Kinetic analysis of receptor-activated phosphoinositide turnover
J. Cell Biol., May 26, 2003; 161(4): 779 - 791.
[Abstract] [Full Text] [PDF]


Home page
J. Cell Sci.Home page
R. Chies, L. Nobbio, P. Edomi, A. Schenone, C. Schneider, and C. Brancolini
Alterations in the Arf6-regulated plasma membrane endosomal recycling pathway in cells overexpressing the tetraspan protein Gas3/PMP22
J. Cell Sci., March 15, 2003; 116(6): 987 - 999.
[Abstract] [Full Text] [PDF]


Home page
Mol. Biol. CellHome page
R. Mancini, E. Piccolo, S. Mariggio', B. M. Filippi, C. Iurisci, P. Pertile, C. P. Berrie, and D. Corda
Reorganization of Actin Cytoskeleton by the Phosphoinositide Metabolite Glycerophosphoinositol 4-Phosphate
Mol. Biol. Cell, February 1, 2003; 14(2): 503 - 515.
[Abstract] [Full Text] [PDF]


Home page
Biol. Reprod.Home page
B. Maier, S. Medrano, S. B. Sleight, P. E. Visconti, and H. Scrable
Developmental Association of the Synaptic Activity-Regulated Protein Arc with the Mouse Acrosomal Organelle and the Sperm Tail
Biol Reprod, January 1, 2003; 68(1): 67 - 76.
[Abstract] [Full Text] [PDF]


Home page
Proc. Natl. Acad. Sci. USAHome page
W. T. Kim, S. Chang, L. Daniell, O. Cremona, G. Di Paolo, and P. De Camilli
Delayed reentry of recycling vesicles into the fusion-competent synaptic vesicle pool in synaptojanin 1 knockout mice
PNAS, December 24, 2002; 99(26): 17143 - 17148.
[Abstract] [Full Text] [PDF]


Home page
J. Leukoc. Biol.Home page
E. Garcia-Garcia and C. Rosales
Signal transduction during Fc receptor-mediated phagocytosis
J. Leukoc. Biol., December 1, 2002; 72(6): 1092 - 1108.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
M. G. Coppolino, R. Dierckman, J. Loijens, R. F. Collins, M. Pouladi, J. Jongstra-Bilen, A. D. Schreiber, W. S. Trimble, R. Anderson, and S. Grinstein
Inhibition of Phosphatidylinositol-4-phosphate 5-Kinase Ialpha Impairs Localized Actin Remodeling and Suppresses Phagocytosis
J. Biol. Chem., November 8, 2002; 277(46): 43849 - 43857.
[Abstract] [Full Text] [PDF]


Home page
Plant CellHome page
T. Ketelaar, C. Faivre-Moskalenko, J. J. Esseling, N. C. A. de Ruijter, C. S. Grierson, M. Dogterom, and A. M. C. Emons
Positioning of Nuclei in Arabidopsis Root Hairs: An Actin-Regulated Process of Tip Growth
PLANT CELL, November 1, 2002; 14(11): 2941 - 2955.
[Abstract] [Full Text] [PDF]


Home page
J. Biol. Chem.Home page
J. Wang, A. Gambhir, G. Hangyas-Mihalyne, D. Murray, U. Golebiewska, and S. McLaughlin
Lateral Sequestration of Phosphatidylinositol 4,5-Bisphosphate by the Basic Effector Domain of Myristoylated Alanine-rich C Kinase Substrate Is Due to Nonspecific Electrostatic Interactions
J. Biol. Chem., September 6, 2002; 277(37): 34401 - 34412.
[Abstract] [Full Text] [PDF]