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Results: 1-25 | 26-28
Results: 1-25/28

Authors: Benard, V Bokoch, GM
Citation: V. Benard et Gm. Bokoch, Assay of Cdc42, Rac, and Rho GTPase activation by affinity methods, METH ENZYM, 345, 2002, pp. 349-359

Authors: Diebold, BA Bokoch, GM
Citation: Ba. Diebold et Gm. Bokoch, Molecular basis for Rac2 regulation of phagocyte NADPH oxidase, NAT IMMUNOL, 2(3), 2001, pp. 211-215

Authors: Ozeri, V Rosenshine, I Ben-Ze'ev, A Bokoch, GM Jou, TS Hanski, E
Citation: V. Ozeri et al., De novo formation of focal complex-like structures in host cells by invading Streptococci, MOL MICROB, 41(3), 2001, pp. 561-573

Authors: Schurmann, A Bokoch, GM
Citation: A. Schurmann et Gm. Bokoch, Role of p-21-activated kinases in cell survival and apoptotic pathways, DRUG DEV R, 52(4), 2001, pp. 542-548

Authors: Golovanov, AP Chuang, TH DerMardirossian, C Barsukov, I Hawkins, D Badii, R Bokoch, GM Lian, LY Roberts, GCK
Citation: Ap. Golovanov et al., Structure-activity relationships in flexible protein domains: Regulation of rho GTPases by RhoGDI and D4 GDI, J MOL BIOL, 305(1), 2001, pp. 121-135

Authors: Prada-Delgado, A Carrasco-Marin, E Bokoch, GM Alvarez-Dominguez, C
Citation: A. Prada-delgado et al., Interferon-gamma listericidal action is mediated by novel Rab5a functions at the phagosomal environment, J BIOL CHEM, 276(22), 2001, pp. 19059-19065

Authors: Golovanov, AP Hawkins, D Barsukov, I Badii, R Bokoch, GM Lian, LY Roberts, GCK
Citation: Ap. Golovanov et al., Structural consequences of site-directed mutagenesis in flexible protein domains - NMR characterization of the L(55,56)S mutant of RhoGDI, EUR J BIOCH, 268(8), 2001, pp. 2253-2260

Authors: Dharmawardhane, S Schurmann, A Sells, MA Chernoff, J Schmid, SL Bokoch, GM
Citation: S. Dharmawardhane et al., Regulation of macropinocytosis by p21-activated kinase-1, MOL BIOL CE, 11(10), 2000, pp. 3341-3352

Authors: Lian, LY Barsukov, I Golovanov, AP Hawkins, DI Badii, R Sze, KH Keep, NH Bokoch, GM Roberts, GCK
Citation: Ly. Lian et al., Mapping the binding site for the GTP-binding protein Rac-1 on its inhibitor RhoGDI-1, STRUCT F D, 8(1), 2000, pp. 47-55

Authors: Schurmann, A Mooney, AF Sanders, LC Sells, MA Wang, HG Reed, JC Bokoch, GM
Citation: A. Schurmann et al., p21-activated kinase 1 phosphorylates the death agonist Bad and protects cells from apoptosis, MOL CELL B, 20(2), 2000, pp. 453-461

Authors: Bokoch, GM
Citation: Gm. Bokoch, Regulation of cell function by Rho family GTPases, IMMUNOL RES, 21(2-3), 2000, pp. 139-148

Authors: King, CC Sanders, LC Bokoch, GM
Citation: Cc. King et al., In vivo activity of wild-type and mutant PAKs, METH ENZYM, 325, 2000, pp. 315-327

Authors: Kraynov, VS Chamberlain, C Bokoch, GM Schwartz, MA Slabaugh, S Hahn, KM
Citation: Vs. Kraynov et al., Localized Rac activation dynamics visualized in living cells, SCIENCE, 290(5490), 2000, pp. 333-337

Authors: King, CC Gardiner, EMM Zenke, FT Bohl, BP Newton, AC Hemmings, BA Bokoch, GM
Citation: Cc. King et al., p21-activated kinase (PAK1) is phosphorylated and activated by 3-phosphoinositide-dependent kinase-1 (PDK1), J BIOL CHEM, 275(52), 2000, pp. 41201-41209

Authors: Uddin, S Lekmine, F Sharma, N Majchrzak, B Mayer, I Young, PR Bokoch, GM Fish, EN Platanias, LC
Citation: S. Uddin et al., The Rac1/p38 mitogen-activated protein kinase pathway is required for interferon alpha-dependent transcriptional activation but not serine phosphorylation of stat proteins, J BIOL CHEM, 275(36), 2000, pp. 27634-27640

Authors: King, CC Zenke, FT Dawson, PE Dutil, EM Newton, AC Hemmings, BA Bokoch, GM
Citation: Cc. King et al., Sphingosine is a novel activator of 3-phosphoinositide-dependent kinase 1, J BIOL CHEM, 275(24), 2000, pp. 18108-18113

Authors: Subauste, MC Von Herrath, M Benard, V Chamberlain, CE Chuang, TH Chu, KT Bokoch, GM Hahn, KM
Citation: Mc. Subauste et al., Rho family proteins modulate rapid apoptosis induced by cytotoxic T lymphocytes and Fas, J BIOL CHEM, 275(13), 2000, pp. 9725-9733

Authors: Benard, V Bokoch, GM Diebold, BA
Citation: V. Benard et al., Potential drug targets: small GTPases that regulate leukocyte function, TRENDS PHAR, 20(9), 1999, pp. 365-370

Authors: Edwards, DC Sanders, LC Bokoch, GM Gill, GN
Citation: Dc. Edwards et al., Activation of LIM-kinase by Pak1 couples Rac/Cdc42 GTPase signalling to actin cytoskeletal dynamics, NAT CELL BI, 1(5), 1999, pp. 253-259

Authors: Daniels, RH Bokoch, GM
Citation: Rh. Daniels et Gm. Bokoch, p21-activated protein kinase: a crucial component of morphological signaling?, TRENDS BIOC, 24(9), 1999, pp. 350-355

Authors: Dharmawardhane, S Brownson, D Lennartz, M Bokoch, GM
Citation: S. Dharmawardhane et al., Localization of p21-activated kinase 1 (PAK1) to pseudopodia, membrane ruffles, and phagocytic cups in activated human neutrophils, J LEUK BIOL, 66(3), 1999, pp. 521-527

Authors: Sanders, LC Matsumura, F Bokoch, GM de Lanerolle, P
Citation: Lc. Sanders et al., Inhibition of myosin light chain kinase by p21-activated kinase, SCIENCE, 283(5410), 1999, pp. 2083-2085

Authors: Kiosses, WB Daniels, RH Otey, C Bokoch, GM Schwartz, MA
Citation: Wb. Kiosses et al., A role for p21-activated kinase in endothelial cell migration, J CELL BIOL, 147(4), 1999, pp. 831-843

Authors: Zenke, FT King, CC Bohl, BP Bokoch, GM
Citation: Ft. Zenke et al., Identification of a central phosphorylation site in p21-activated kinase regulating autoinhibition and kinase activity, J BIOL CHEM, 274(46), 1999, pp. 32565-32573

Authors: Daniels, RH Zenke, FT Bokoch, GM
Citation: Rh. Daniels et al., alpha Pix stimulates p21-activated kinase activity through exchange factor-dependent and -independent mechanisms. (vol 274, pg 6047, 1999), J BIOL CHEM, 274(21), 1999, pp. 15292-15292
Risultati: 1-25 | 26-28