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Summary Expression Phenotypes Gene Literature (145) GO Terms (17) Nucleotides (1322) Proteins (74) Interactants (871) Wiki
XB-GENEPAGE-967584

Papers associated with cdc42



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Filopodial protrusion driven by density-dependent Ena-TOCA-1 interactions., Blake TCA, Fox HM, Urbančič V, Ravishankar R, Wolowczyk A, Allgeyer ES, Mason J, Danuser G, Gallop JL., J Cell Sci. March 15, 2024; 137 (6):


Phosphorylation of serine residues S252, S268/S269, and S879 in p120 catenin activates migration of presomitic mesoderm in gastrulating zebrafish embryos., Kupai A, Nakahara H, Voss KM, Hirano MS, Rodriguez A, Lackey DL, Murayama JF, Mathieson CJ, Shan B, Horton EC, Curtis GH, Huang J, Hille MB., Dev Dyn. December 1, 2022; 251 (12): 1952-1967.            


Biochemical Assays to Detect Activation of Small GTPases Rho, Rac, and Cdc42 during Morphogenesis., Berns ML, Habas R., Methods Mol Biol. January 1, 2022; 2438 83-95.


Cross-talk-dependent cortical patterning of Rho GTPases during cell repair., Moe A, Holmes W, Golding AE, Zola J, Swider ZT, Edelstein-Keshet L, Bement W., Mol Biol Cell. August 1, 2021; 32 (16): 1417-1432.                                  


Tension modulation of actomyosin ring assembly and RhoGTPases activity: Perspectives from the Xenopus oocyte wound healing model., Kato T, Ghadban L, Boucher E, Mandato CA., Cytoskeleton (Hoboken). July 1, 2021; 78 (7): 349-360.


Stochastic combinations of actin regulatory proteins are sufficient to drive filopodia formation., Dobramysl U, Jarsch IK, Inoue Y, Shimo H, Richier B, Gadsby JR, Mason J, Szałapak A, Ioannou PS, Correia GP, Walrant A, Butler R, Hannezo E, Simons BD, Gallop JL., J Cell Biol. April 5, 2021; 220 (4):                                       


DAAM2 Variants Cause Nephrotic Syndrome via Actin Dysregulation., Schneider R, Deutsch K, Hoeprich GJ, Marquez J, Hermle T, Braun DA, Seltzsam S, Kitzler TM, Mao Y, Buerger F, Majmundar AJ, Onuchic-Whitford AC, Kolvenbach CM, Schierbaum L, Schneider S, Halawi AA, Nakayama M, Mann N, Connaughton DM, Klämbt V, Wagner M, Riedhammer KM, Renders L, Katsura Y, Thumkeo D, Soliman NA, Mane S, Lifton RP, Shril S, Khokha MK, Hoefele J, Goode BL, Hildebrandt F., Am J Hum Genet. December 3, 2020; 107 (6): 1113-1128.


PAK1 Regulates MEC-17 Acetyltransferase Activity and Microtubule Acetylation during Proplatelet Extension., van Dijk J, Bompard G, Rabeharivelo G, Cau J, Delsert C, Morin N., Int J Mol Sci. October 13, 2020; 21 (20):


Caveolin 1 is required for axonal outgrowth of motor neurons and affects Xenopus neuromuscular development., Breuer M, Berger H, Borchers A., Sci Rep. October 5, 2020; 10 (1): 16446.              


The Rho guanine nucleotide exchange factor Trio is required for neural crest cell migration and interacts with Dishevelled., Kratzer MC, Becker SFS, Grund A, Merks A, Harnoš J, Bryja V, Giehl K, Kashef J, Borchers A., Development. May 22, 2020; 147 (10):                                   


Extraction of active RhoGTPases by RhoGDI regulates spatiotemporal patterning of RhoGTPases., Golding AE, Visco I, Bieling P, Bement WM., Elife. October 24, 2019; 8                                                                                                 


Dynamics of actin polymerisation during the mammalian single-cell wound healing response., DeKraker C, Goldin-Blais L, Boucher E, Mandato CA., BMC Res Notes. July 16, 2019; 12 (1): 420.      


In vivo topology converts competition for cell-matrix adhesion into directional migration., Bajanca F, Gouignard N, Colle C, Parsons M, Mayor R, Theveneau E., Nat Commun. April 3, 2019; 10 (1): 1518.                    


Dynamin Binding Protein Is Required for Xenopus laevis Kidney Development., DeLay BD, Baldwin TA, Miller RK., Front Physiol. January 1, 2019; 10 143.                                


Cdc42 Effector Protein 3 Interacts With Cdc42 in Regulating Xenopus Somite Segmentation., Kho M, Shi H, Nie S., Front Physiol. January 1, 2019; 10 542.          


The Lhx1-Ldb1 complex interacts with Furry to regulate microRNA expression during pronephric kidney development., Espiritu EB, Crunk AE, Bais A, Hochbaum D, Cervino AS, Phua YL, Butterworth MB, Goto T, Ho J, Hukriede NA, Cirio MC., Sci Rep. October 30, 2018; 8 (1): 16029.                                      


Mutations in multiple components of the nuclear pore complex cause nephrotic syndrome., Braun DA, Lovric S, Schapiro D, Schneider R, Marquez J, Asif M, Hussain MS, Daga A, Widmeier E, Rao J, Ashraf S, Tan W, Lusk CP, Kolb A, Jobst-Schwan T, Schmidt JM, Hoogstraten CA, Eddy K, Kitzler TM, Shril S, Moawia A, Schrage K, Khayyat AIA, Lawson JA, Gee HY, Warejko JK, Hermle T, Majmundar AJ, Hugo H, Budde B, Motameny S, Altmüller J, Noegel AA, Fathy HM, Gale DP, Waseem SS, Khan A, Kerecuk L, Hashmi S, Mohebbi N, Ettenger R, Serdaroğlu E, Alhasan KA, Hashem M, Goncalves S, Ariceta G, Ubetagoyena M, Antonin W, Baig SM, Alkuraya FS, Shen Q, Xu H, Antignac C, Lifton RP, Mane S, Nürnberg P, Khokha MK, Hildebrandt F., J Clin Invest. October 1, 2018; 128 (10): 4313-4328.


Cdc42 regulates the cellular localization of Cdc42ep1 in controlling neural crest cell migration., Cohen S, Kovari DT, Wei W, Keate R, Curtis JE, Nie S., J Mol Cell Biol. October 1, 2018; 10 (5): 376-387.                    


Glycogen synthase kinase 3 controls migration of the neural crest lineage in mouse and Xenopus., Gonzalez Malagon SG, Lopez Muñoz AM, Doro D, Bolger TG, Poon E, Tucker ER, Adel Al-Lami H, Krause M, Phiel CJ, Chesler L, Liu KJ, Liu KJ., Nat Commun. March 19, 2018; 9 (1): 1126.                  


Control of actin polymerization via the coincidence of phosphoinositides and high membrane curvature., Daste F, Walrant A, Holst MR, Gadsby JR, Mason J, Lee JE, Brook D, Mettlen M, Larsson E, Lee SF, Lundmark R, Gallop JL., J Cell Biol. November 6, 2017; 216 (11): 3745-3765.                


Id genes are essential for early heart formation., Cunningham TJ, Yu MS, McKeithan WL, Spiering S, Carrette F, Huang CT, Bushway PJ, Tierney M, Albini S, Giacca M, Mano M, Puri PL, Sacco A, Ruiz-Lozano P, Riou JF, Umbhauer M, Duester G, Mercola M, Colas AR., Genes Dev. July 1, 2017; 31 (13): 1325-1338.                


The signalling receptor MCAM coordinates apical-basal polarity and planar cell polarity during morphogenesis., Gao Q, Zhang J, Wang X, Liu Y, He R, Liu X, Wang F, Feng J, Yang D, Wang Z, Meng A, Yan X., Nat Commun. June 7, 2017; 8 15279.              


A frog's view of EphrinB signaling., Hwang YS, Daar IO., Genesis. January 1, 2017; 55 (1-2):         


Xenopus laevis as a model system to study cytoskeletal dynamics during axon pathfinding., Slater PG, Hayrapetian L, Lowery LA., Genesis. January 1, 2017; 55 (1-2):   


Multi-phasic bi-directional chemotactic responses of the growth cone., Naoki H, Nishiyama M, Togashi K, Igarashi Y, Hong K, Ishii S., Sci Rep. November 3, 2016; 6 36256.            


The cellular and molecular mechanisms of tissue repair and regeneration as revealed by studies in Xenopus., Li J, Zhang S, Amaya E., Regeneration (Oxf). October 28, 2016; 3 (4): 198-208.        


(1)H, (13)C and (15)N resonance assignments of the Cdc42-binding domain of TOCA1., Watson JR, Nietlispach D, Owen D, Mott HR., Biomol NMR Assign. October 1, 2016; 10 (2): 407-11.    


Membrane dynamics during cellular wound repair., Davenport NR, Sonnemann KJ, Eliceiri KW, Bement WM., Mol Biol Cell. July 15, 2016; 27 (14): 2272-85.                      


Investigation of the Interaction between Cdc42 and Its Effector TOCA1: HANDOVER OF Cdc42 TO THE ACTIN REGULATOR N-WASP IS FACILITATED BY DIFFERENTIAL BINDING AFFINITIES., Watson JR, Fox HM, Nietlispach D, Gallop JL, Owen D, Mott HR., J Biol Chem. June 24, 2016; 291 (26): 13875-90.                  


Modeling the roles of protein kinase C beta and eta in single cell wound repair., Holmes WR, Liao L, Bement W, Edelstein-Keshet L., Mol Biol Cell. November 5, 2015; .          


Atypical RhoV and RhoU GTPases control development of the neural crest., Faure S, Fort P., Small GTPases. October 2, 2015; 6 (4): 174-7.


Rho family GTPases bring a familiar ring to cell wound repair., Verboon JM, Parkhurst SM., Small GTPases. January 1, 2015; 6 (1): 1-7.    


Triggering actin polymerization in Xenopus egg extracts from phosphoinositide-containing lipid bilayers., Walrant A, Saxton DS, Correia GP, Gallop JL., Methods Cell Biol. January 1, 2015; 128 125-47.


Lipid domain-dependent regulation of single-cell wound repair., Vaughan EM, You JS, Elsie Yu HY, Lasek A, Vitale N, Hornberger TA, Bement WM., Mol Biol Cell. June 15, 2014; 25 (12): 1867-76.              


ERK and phosphoinositide 3-kinase temporally coordinate different modes of actin-based motility during embryonic wound healing., Li J, Zhang S, Soto X, Woolner S, Amaya E., J Cell Sci. November 1, 2013; 126 (Pt 21): 5005-17.              


It's never too early to get it Right: A conserved role for the cytoskeleton in left-right asymmetry., Vandenberg LN, Lemire JM, Levin M., Commun Integr Biol. November 1, 2013; 6 (6): e27155.          


Regulation of neurogenesis by Fgf8a requires Cdc42 signaling and a novel Cdc42 effector protein., Hulstrand AM, Houston DW., Dev Biol. October 15, 2013; 382 (2): 385-99.                              


Inositol kinase and its product accelerate wound healing by modulating calcium levels, Rho GTPases, and F-actin assembly., Soto X, Li J, Lea R, Dubaissi E, Papalopulu N, Amaya E., Proc Natl Acad Sci U S A. July 2, 2013; 110 (27): 11029-34.                                      


Different thresholds of Wnt-Frizzled 7 signaling coordinate proliferation, morphogenesis and fate of endoderm progenitor cells., Zhang Z, Rankin SA, Zorn AM., Dev Biol. June 1, 2013; 378 (1): 1-12.                              


β-Arrestin 1 mediates non-canonical Wnt pathway to regulate convergent extension movements., Kim GH, Park EC, Lee H, Lee H, Na HJ, Choi SC, Han JK., Biochem Biophys Res Commun. May 31, 2013; 435 (2): 182-7.                  


Phosphoinositides and membrane curvature switch the mode of actin polymerization via selective recruitment of toca-1 and Snx9., Gallop JL, Walrant A, Cantley LC, Kirschner MW., Proc Natl Acad Sci U S A. April 30, 2013; 110 (18): 7193-8.


Pattern formation of Rho GTPases in single cell wound healing., Simon CM, Vaughan EM, Bement WM, Edelstein-Keshet L., Mol Biol Cell. February 1, 2013; 24 (3): 421-32.                


Developmental regulation of locomotive activity in Xenopus primordial germ cells., Terayama K, Kataoka K, Morichika K, Orii H, Watanabe K, Mochii M., Dev Growth Differ. February 1, 2013; 55 (2): 217-28.          


Signaling and transcriptional regulation in neural crest specification and migration: lessons from xenopus embryos., Pegoraro C, Monsoro-Burq AH., Wiley Interdiscip Rev Dev Biol. January 1, 2013; 2 (2): 247-59.      


The endocytic adapter E-Syt2 recruits the p21 GTPase activated kinase PAK1 to mediate actin dynamics and FGF signalling., Jean S, Tremblay MG, Herdman C, Guillou F, Moss T., Biol Open. August 15, 2012; 1 (8): 731-8.          


A Rho GTPase signal treadmill backs a contractile array., Burkel BM, Benink HA, Vaughan EM, von Dassow G, Bement WM., Dev Cell. August 14, 2012; 23 (2): 384-96.                        


Focal adhesion kinase modulates Cdc42 activity downstream of positive and negative axon guidance cues., Myers JP, Robles E, Ducharme-Smith A, Gomez TM., J Cell Sci. June 15, 2012; 125 (Pt 12): 2918-29.


Imaging adhesion and signaling dynamics in Xenopus laevis growth cones., Santiago-Medina M, Myers JP, Gomez TM., Dev Neurobiol. April 1, 2012; 72 (4): 585-99.          


The p21-activated kinase Pak1 regulates induction and migration of the neural crest in Xenopus., Bisson N, Wedlich D, Moss T., Cell Cycle. April 1, 2012; 11 (7): 1316-24.


Functional conservation of Nematostella Wnts in canonical and noncanonical Wnt-signaling., Rigo-Watermeier T, Kraft B, Ritthaler M, Wallkamm V, Holstein T, Wedlich D., Biol Open. January 15, 2012; 1 (1): 43-51.            

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