Attachment conditions control actin filament buckling and the production of forces.
暂无分享,去创建一个
Laurent Blanchoin | Jean-Louis Martiel | Julien Berro | L. Blanchoin | J. Berro | D. Kovar | J. Martiel | Alphée Michelot | Alphée Michelot | David R Kovar | A. Michelot
[1] T. Pollard,et al. Control of the Assembly of ATP- and ADP-Actin by Formins and Profilin , 2006, Cell.
[2] S. Sinha,et al. Elasticity of semiflexible polymers. , 2002, Physical review. E, Statistical, nonlinear, and soft matter physics.
[3] Charles Boone,et al. Role of Formins in Actin Assembly: Nucleation and Barbed-End Association , 2002, Science.
[4] E. Sahai,et al. Diaphanous-related formins bridge Rho GTPase and Src tyrosine kinase signaling. , 2000, Molecular cell.
[5] Leah Edelstein-Keshet,et al. Regulation of actin dynamics in rapidly moving cells: a quantitative analysis. , 2002, Biophysical journal.
[6] D. Pellman,et al. A conserved mechanism for Bni1- and mDia1-induced actin assembly and dual regulation of Bni1 by Bud6 and profilin. , 2003, Molecular biology of the cell.
[7] Robert E. Lewis,et al. The formin-homology-domain-containing protein FHOD1 enhances cell migration , 2003, Journal of Cell Science.
[8] Christopher E. Brennen,et al. Fluid Mechanics of Propulsion by Cilia and Flagella , 1977 .
[9] T D Pollard,et al. Direct real-time observation of actin filament branching mediated by Arp2/3 complex using total internal reflection fluorescence microscopy , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[10] David Pellman,et al. Yeast formins regulate cell polarity by controlling the assembly of actin cables , 2002, Nature Cell Biology.
[11] E. E. Zajac,et al. Stability of Two Planar Loop Elasticas , 1962 .
[12] Jun Peng,et al. Disruption of the Diaphanous-Related Formin Drf1 Gene Encoding mDia1 Reveals a Role for Drf3 as an Effector for Cdc42 , 2003, Current Biology.
[13] M. Bartoo,et al. The stiffness of rabbit skeletal actomyosin cross-bridges determined with an optical tweezers transducer. , 1998, Biophysical journal.
[14] J. Shao,et al. Deformation and flow of membrane into tethers extracted from neuronal growth cones. , 1996, Biophysical journal.
[15] Thomas D Pollard,et al. Real-time measurements of actin filament polymerization by total internal reflection fluorescence microscopy. , 2005, Biophysical journal.
[16] S. Narumiya,et al. Actin Polymerization-Driven Molecular Movement of mDia1 in Living Cells , 2004, Science.
[17] E. Egelman,et al. ADF/cofilin use an intrinsic mode of F-actin instability to disrupt actin filaments , 2003, The Journal of cell biology.
[18] H. Pasolli,et al. Mammalian formin-1 participates in adherens junctions and polymerization of linear actin cables , 2004, Nature Cell Biology.
[19] Jonathan B. Alberts,et al. In Silico Reconstitution of Listeria Propulsion Exhibits Nano-Saltation , 2004, PLoS biology.
[20] J. Howard,et al. Mechanics of Motor Proteins and the Cytoskeleton , 2001 .
[21] Y. Kalaidzidis,et al. RhoD regulates endosome dynamics through Diaphanous-related Formin and Src tyrosine kinase , 2003, Nature Cell Biology.
[22] T. Pollard,et al. Insertional assembly of actin filament barbed ends in association with formins produces piconewton forces. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[23] Thomas D Pollard,et al. Cellular Motility Driven by Assembly and Disassembly of Actin Filaments , 2003, Cell.
[24] R. Grosse,et al. Staying in shape with formins. , 2006, Developmental cell.
[25] 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.
[26] T. Yanagida,et al. Multiple- and single-molecule analysis of the actomyosin motor by nanometer-piconewton manipulation with a microneedle: unitary steps and forces. , 1996, Biophysical journal.
[27] Radial Distribution Function of Semiflexible Polymers. , 1996, Physical review letters.
[28] P. Chaikin,et al. An elastic analysis of Listeria monocytogenes propulsion. , 2000, Biophysical journal.
[29] J. Howard,et al. Flexural rigidity of microtubules and actin filaments measured from thermal fluctuations in shape , 1993, The Journal of cell biology.
[30] Marie-France Carlier,et al. Formin Is a Processive Motor that Requires Profilin to Accelerate Actin Assembly and Associated ATP Hydrolysis , 2004, Cell.
[31] George Oster,et al. Force generation by actin polymerization II: the elastic ratchet and tethered filaments. , 2003, Biophysical journal.
[32] Benjamin Geiger,et al. Focal Contacts as Mechanosensors Externally Applied Local Mechanical Force Induces Growth of Focal Contacts by an Mdia1-Dependent and Rock-Independent Mechanism , 2001 .
[33] Erwin Frey,et al. Tracer studies on f-actin fluctuations. , 2002, Physical review letters.
[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] Fred Chang,et al. cdc12p, a Protein Required for Cytokinesis in Fission Yeast, Is a Component of the Cell Division Ring and Interacts with Profilin , 1997, The Journal of cell biology.
[36] G. Oster,et al. Cell motility driven by actin polymerization. , 1996, Biophysical journal.
[37] E. Dill,et al. Kirchhoff's theory of rods , 1992 .
[38] Charles Boone,et al. Formin Leaky Cap Allows Elongation in the Presence of Tight Capping Proteins , 2003, Current Biology.