Network heterogeneity regulates steering in actin-based motility
暂无分享,去创建一个
Manuel Théry | Laurent Blanchoin | Cristian Suarez | Alex Mogilner | Jie Zhu | A. Mogilner | L. Blanchoin | Cristian Suarez | Christophe Guérin | T. Klar | M. Théry | Rajaa Boujemaa-Paterski | Tobias Klar | Christophe Guérin | Jie Zhu | R. Boujemaa-Paterski | Jie Zhu | Manuel Théry | Rajaa Boujemaa-Paterski
[1] Leah Edelstein-Keshet,et al. Regulation of actin dynamics in rapidly moving cells: a quantitative analysis. , 2002, Biophysical journal.
[2] Clare M. Waterman,et al. The FAK–Arp2/3 interaction promotes leading edge advance and haptosensing by coupling nascent adhesions to lamellipodia actin , 2016, Molecular biology of the cell.
[3] Laurent Blanchoin,et al. A “Primer”-Based Mechanism Underlies Branched Actin Filament Network Formation and Motility , 2010, Current Biology.
[4] L. Blanchoin,et al. Nucleation geometry governs ordered actin networks structures. , 2010, Nature materials.
[5] T D Pollard,et al. The interaction of Arp2/3 complex with actin: nucleation, high affinity pointed end capping, and formation of branching networks of filaments. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[6] Shawn M. Gomez,et al. Arp2/3 Is Critical for Lamellipodia and Response to Extracellular Matrix Cues but Is Dispensable for Chemotaxis , 2012, Cell.
[7] J. R.,et al. Quantitative analysis , 1892, Nature.
[8] Christian Schmeiser,et al. Actin branching in the initiation and maintenance of lamellipodia , 2012, Journal of Cell Science.
[9] T. Pollard,et al. Cellular Motility Driven by Assembly and Disassembly of Actin Filaments , 2003, Cell.
[10] Klemens Rottner,et al. The lamellipodium: where motility begins. , 2002, Trends in cell biology.
[11] Alexis Gautreau,et al. Steering cell migration: lamellipodium dynamics and the regulation of directional persistence , 2014, Nature Reviews Molecular Cell Biology.
[12] J. Cooper,et al. Biological role and structural mechanism of twinfilin–capping protein interaction , 2004, The EMBO journal.
[13] Sergey V Plotnikov,et al. Guiding cell migration by tugging. , 2013, Current opinion in cell biology.
[14] J. Spudich,et al. The regulation of rabbit skeletal muscle contraction. I. Biochemical studies of the interaction of the tropomyosin-troponin complex with actin and the proteolytic fragments of myosin. , 1971, The Journal of biological chemistry.
[15] Hazen P. Babcock,et al. Dual-objective STORM reveals three-dimensional filament organization in the actin cytoskeleton , 2011, Nature Methods.
[16] Tai-De Li,et al. Force Feedback Controls Motor Activity and Mechanical Properties of Self-Assembling Branched Actin Networks , 2016, Cell.
[17] T. Pollard,et al. Scar, a WASp-related protein, activates nucleation of actin filaments by the Arp2/3 complex. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[18] Marie-France Carlier,et al. Reconstitution of actin-based motility of Listeria and Shigella using pure proteins , 1999, Nature.
[19] L. Blanchoin,et al. Directed actin assembly and motility. , 2014, Methods in enzymology.
[20] Giulio Superti-Furga,et al. Actin-based motility of vaccinia virus mimics receptor tyrosine kinase signalling , 1999, Nature.
[21] A. Ridley,et al. Rho GTPase signalling in cell migration , 2015, Current opinion in cell biology.
[22] Laurent Blanchoin,et al. Actin dynamics, architecture, and mechanics in cell motility. , 2014, Physiological reviews.
[23] G. Oster,et al. Cell motility driven by actin polymerization. , 1996, Biophysical journal.
[24] Marie-France Carlier,et al. The dynamics of actin-based motility depend on surface parameters , 2002, Nature.
[25] R. Geffers,et al. FMNL2 Drives Actin-Based Protrusion and Migration Downstream of Cdc42 , 2012, Current Biology.
[26] T. Pollard,et al. Identification of a factor in conventional muscle actin preparations which inhibits actin filament self-association. , 1980, Biochemical and biophysical research communications.
[27] R. Mullins,et al. Capping Protein Increases the Rate of Actin-Based Motility by Promoting Filament Nucleation by the Arp2/3 Complex , 2008, Cell.
[28] Zachary Pincus,et al. Emergence of Large-Scale Cell Morphology and Movement from Local Actin Filament Growth Dynamics , 2007, PLoS biology.
[29] Gary G. Borisy,et al. Arp2/3 Complex and Actin Depolymerizing Factor/Cofilin in Dendritic Organization and Treadmilling of Actin Filament Array in Lamellipodia , 1999, The Journal of cell biology.
[30] L. Blanchoin,et al. How actin network dynamics control the onset of actin-based motility , 2012, Proceedings of the National Academy of Sciences.
[31] J. Käs,et al. FMNL formins boost lamellipodial force generation , 2017, Nature Communications.
[32] T D Pollard,et al. Molecular mechanisms controlling actin filament dynamics in nonmuscle cells. , 2000, Annual review of biophysics and biomolecular structure.
[33] P. Sansonetti,et al. Activation of the Cdc42 Effector N-Wasp by the Shigella flexneri Icsa Protein Promotes Actin Nucleation by Arp2/3 Complex and Bacterial Actin-Based Motility , 1999, The Journal of cell biology.
[34] T D Pollard,et al. Rate constants for the reactions of ATP- and ADP-actin with the ends of actin filaments , 1986, The Journal of cell biology.
[35] Mark J. Dayel,et al. In Silico Reconstitution of Actin-Based Symmetry Breaking and Motility , 2009, PLoS biology.
[36] Eric A. Vitriol,et al. Dynamic Localization of G-Actin during Membrane Protrusion in Neuronal Motility , 2013, Current Biology.
[37] Patrick Leduc,et al. Fabrication of three-dimensional electrical connections by means of directed actin self-organization. , 2013, Nature materials.
[38] C. Weijer. Collective cell migration in development , 2009, Journal of Cell Science.
[39] L. Blanchoin,et al. Reprogramming cell shape with laser nano-patterning , 2012, Journal of Cell Science.
[40] Thomas D. Pollard,et al. Interaction of WASP/Scar proteins with actin and vertebrate Arp2/3 complex , 2000, Nature Cell Biology.
[41] T. Pollard,et al. Purification, characterization and crystallization of Acanthamoeba profilin expressed in Escherichia coli. , 1994, Journal of molecular biology.
[42] F. Lafuma,et al. A biomimetic motility assay provides insight into the mechanism of actin-based motility , 2003, The Journal of cell biology.
[43] Nadine Peyriéras,et al. Inhibitory signalling to the Arp2/3 complex steers cell migration , 2013, Nature.
[44] K. Rottner,et al. Differentially oriented populations of actin filaments generated in lamellipodia collaborate in pushing and pausing at the cell front , 2008, Nature Cell Biology.
[45] H. Isambert,et al. Flexibility of actin filaments derived from thermal fluctuations. Effect of bound nucleotide, phalloidin, and muscle regulatory proteins , 1995, The Journal of Biological Chemistry.
[46] Julie A. Theriot,et al. Mechanism of shape determination in motile cells , 2008, Nature.
[47] Dorit Hanein,et al. The Arp2/3 complex is required for lamellipodia extension and directional fibroblast cell migration , 2012, The Journal of cell biology.
[48] Gary G. Borisy,et al. Antagonism between Ena/VASP Proteins and Actin Filament Capping Regulates Fibroblast Motility , 2002, Cell.