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Journal Abstract Search


270 related items for PubMed ID: 19109420

  • 1. Supervillin reorganizes the actin cytoskeleton and increases invadopodial efficiency.
    Crowley JL, Smith TC, Fang Z, Takizawa N, Luna EJ.
    Mol Biol Cell; 2009 Feb; 20(3):948-62. PubMed ID: 19109420
    [Abstract] [Full Text] [Related]

  • 2. Dynamic membrane remodeling at invadopodia differentiates invadopodia from podosomes.
    Artym VV, Matsumoto K, Mueller SC, Yamada KM.
    Eur J Cell Biol; 2011 Feb; 90(2-3):172-80. PubMed ID: 20656375
    [Abstract] [Full Text] [Related]

  • 3. Co-localization of cortactin and phosphotyrosine identifies active invadopodia in human breast cancer cells.
    Bowden ET, Onikoyi E, Slack R, Myoui A, Yoneda T, Yamada KM, Mueller SC.
    Exp Cell Res; 2006 May 01; 312(8):1240-53. PubMed ID: 16442522
    [Abstract] [Full Text] [Related]

  • 4. Dynamic interactions of cortactin and membrane type 1 matrix metalloproteinase at invadopodia: defining the stages of invadopodia formation and function.
    Artym VV, Zhang Y, Seillier-Moiseiwitsch F, Yamada KM, Mueller SC.
    Cancer Res; 2006 Mar 15; 66(6):3034-43. PubMed ID: 16540652
    [Abstract] [Full Text] [Related]

  • 5. Phosphorylated cortactin recruits Vav2 guanine nucleotide exchange factor to activate Rac3 and promote invadopodial function in invasive breast cancer cells.
    Rosenberg BJ, Gil-Henn H, Mader CC, Halo T, Yin T, Condeelis J, Machida K, Wu YI, Koleske AJ.
    Mol Biol Cell; 2017 May 15; 28(10):1347-1360. PubMed ID: 28356423
    [Abstract] [Full Text] [Related]

  • 6. Dissecting the functional domain requirements of cortactin in invadopodia formation.
    Webb BA, Jia L, Eves R, Mak AS.
    Eur J Cell Biol; 2007 Apr 15; 86(4):189-206. PubMed ID: 17343955
    [Abstract] [Full Text] [Related]

  • 7. Supervillin slows cell spreading by facilitating myosin II activation at the cell periphery.
    Takizawa N, Ikebe R, Ikebe M, Luna EJ.
    J Cell Sci; 2007 Nov 01; 120(Pt 21):3792-803. PubMed ID: 17925381
    [Abstract] [Full Text] [Related]

  • 8. Quantitative kinetic study of the actin-bundling protein L-plastin and of its impact on actin turn-over.
    Al Tanoury Z, Schaffner-Reckinger E, Halavatyi A, Hoffmann C, Moes M, Hadzic E, Catillon M, Yatskou M, Friederich E.
    PLoS One; 2010 Feb 15; 5(2):e9210. PubMed ID: 20169155
    [Abstract] [Full Text] [Related]

  • 9. Supervillin modulation of focal adhesions involving TRIP6/ZRP-1.
    Takizawa N, Smith TC, Nebl T, Crowley JL, Palmieri SJ, Lifshitz LM, Ehrhardt AG, Hoffman LM, Beckerle MC, Luna EJ.
    J Cell Biol; 2006 Jul 31; 174(3):447-58. PubMed ID: 16880273
    [Abstract] [Full Text] [Related]

  • 10. Domain analysis of supervillin, an F-actin bundling plasma membrane protein with functional nuclear localization signals.
    Wulfkuhle JD, Donina IE, Stark NH, Pope RK, Pestonjamasp KN, Niswonger ML, Luna EJ.
    J Cell Sci; 1999 Jul 31; 112 ( Pt 13)():2125-36. PubMed ID: 10362542
    [Abstract] [Full Text] [Related]

  • 11. An EGFR-Src-Arg-cortactin pathway mediates functional maturation of invadopodia and breast cancer cell invasion.
    Mader CC, Oser M, Magalhaes MA, Bravo-Cordero JJ, Condeelis J, Koleske AJ, Gil-Henn H.
    Cancer Res; 2011 Mar 01; 71(5):1730-41. PubMed ID: 21257711
    [Abstract] [Full Text] [Related]

  • 12. Cortactin tyrosine phosphorylation requires Rac1 activity and association with the cortical actin cytoskeleton.
    Head JA, Jiang D, Li M, Zorn LJ, Schaefer EM, Parsons JT, Weed SA.
    Mol Biol Cell; 2003 Aug 01; 14(8):3216-29. PubMed ID: 12925758
    [Abstract] [Full Text] [Related]

  • 13. Cortactin and fascin-1 regulate extracellular vesicle release by controlling endosomal trafficking or invadopodia formation and function.
    Beghein E, Devriese D, Van Hoey E, Gettemans J.
    Sci Rep; 2018 Oct 23; 8(1):15606. PubMed ID: 30353022
    [Abstract] [Full Text] [Related]

  • 14. Novel interactors and a role for supervillin in early cytokinesis.
    Smith TC, Fang Z, Luna EJ.
    Cytoskeleton (Hoboken); 2010 Jun 23; 67(6):346-64. PubMed ID: 20309963
    [Abstract] [Full Text] [Related]

  • 15. Specific tyrosine phosphorylation sites on cortactin regulate Nck1-dependent actin polymerization in invadopodia.
    Oser M, Mader CC, Gil-Henn H, Magalhaes M, Bravo-Cordero JJ, Koleske AJ, Condeelis J.
    J Cell Sci; 2010 Nov 01; 123(Pt 21):3662-73. PubMed ID: 20971703
    [Abstract] [Full Text] [Related]

  • 16. Supervillin couples myosin-dependent contractility to podosomes and enables their turnover.
    Bhuwania R, Cornfine S, Fang Z, Krüger M, Luna EJ, Linder S.
    J Cell Sci; 2012 May 01; 125(Pt 9):2300-14. PubMed ID: 22344260
    [Abstract] [Full Text] [Related]

  • 17. F-actin and myosin II binding domains in supervillin.
    Chen Y, Takizawa N, Crowley JL, Oh SW, Gatto CL, Kambara T, Sato O, Li XD, Ikebe M, Luna EJ.
    J Biol Chem; 2003 Nov 14; 278(46):46094-106. PubMed ID: 12917436
    [Abstract] [Full Text] [Related]

  • 18. Src-mediated phosphorylation of mammalian Abp1 (DBNL) regulates podosome rosette formation in transformed fibroblasts.
    Boateng LR, Cortesio CL, Huttenlocher A.
    J Cell Sci; 2012 Mar 01; 125(Pt 5):1329-41. PubMed ID: 22303001
    [Abstract] [Full Text] [Related]

  • 19. Actin cytoskeleton remodelling via local inhibition of contractility at discrete microdomains.
    Burgstaller G, Gimona M.
    J Cell Sci; 2004 Jan 15; 117(Pt 2):223-31. PubMed ID: 14676275
    [Abstract] [Full Text] [Related]

  • 20. Stratifying fascin and cortactin function in invadopodium formation using inhibitory nanobodies and targeted subcellular delocalization.
    Van Audenhove I, Boucherie C, Pieters L, Zwaenepoel O, Vanloo B, Martens E, Verbrugge C, Hassanzadeh-Ghassabeh G, Vandekerckhove J, Cornelissen M, De Ganck A, Gettemans J.
    FASEB J; 2014 Apr 15; 28(4):1805-18. PubMed ID: 24414419
    [Abstract] [Full Text] [Related]


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