Analyzing focal adhesion structure by atomic force microscopy
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[1] C. Fernández-Valle,et al. Association of β1 Integrin with Focal Adhesion Kinase and Paxillin in Differentiating Schwann Cells , 2000, The Journal of Neuroscience.
[2] J. Heuser. The Production of ‘Cell Cortices’ for Light and Electron Microscopy , 2000, Traffic.
[3] P. W. Luther,et al. Structures linking microfilament bundles to the membrane at focal contacts , 1993, The Journal of cell biology.
[4] C. Turner,et al. Paxillin: a new vinculin-binding protein present in focal adhesions , 1990, The Journal of cell biology.
[5] Gerber,et al. Atomic Force Microscope , 2020, Definitions.
[6] K. Rottner,et al. Visualising the actin cytoskeleton , 1999, Microscopy research and technique.
[7] Beat Imhof,et al. The inner lives of focal adhesions. , 2002, Trends in cell biology.
[8] B. Geiger. A 130K protein from chicken gizzard: Its localization at the termini of microfilament bundles in cultured chicken cells , 1979, Cell.
[9] T. Svitkina,et al. Improved procedures for electron microscopic visualization of the cytoskeleton of cultured cells. , 1995, Journal of structural biology.
[10] C. Feltkamp,et al. Organization of talin and vinculin in adhesion plaques of wet-cleaved chicken embryo fibroblasts. , 1991, Journal of cell science.
[11] A. Engel,et al. Electrostatically balanced subnanometer imaging of biological specimens by atomic force microscope. , 1999, Biophysical journal.
[12] Udo D. Schwarz,et al. Tip artefacts in scanning force microscopy , 1994 .
[13] M. Kirschner,et al. Filament organization revealed in platinum replicas of freeze-dried cytoskeletons , 1980, The Journal of cell biology.
[14] J. Parsons,et al. Focal adhesion kinase and paxillin bind to peptides mimicking beta integrin cytoplasmic domains , 1995, The Journal of cell biology.
[15] C. Turner,et al. The role of phosphorylation and limited proteolytic cleavage of talin and vinculin in the disruption of focal adhesion integrity. , 1989, The Journal of biological chemistry.
[16] C. S. Izzard,et al. Cell-to-substrate contacts in living fibroblasts: an interference reflexion study with an evaluation of the technique. , 1976, Journal of cell science.
[17] J. Hörber,et al. Scanning Probe Evolution in Biology , 2003, Science.
[18] L. Connell,et al. A new protein of adhesion plaques and ruffling membranes , 1983, The Journal of cell biology.
[19] Ken Jacobson,et al. Dissecting the link between stress fibres and focal adhesions by CALI with EGFP fusion proteins , 2002, Nature Cell Biology.
[20] Aufried T. M. Lenferink,et al. Combined AFM and confocal fluorescence microscope for applications in bio‐nanotechnology , 2005, Journal of microscopy.
[21] D. DeRosier,et al. Three-dimensional reconstruction of F-actin, thin filaments and decorated thin filaments. , 1970, Journal of molecular biology.
[22] C. Feltkamp,et al. Wet cleaving of cells: a method to introduce macromolecules into the cytoplasm. Application for immunolocalization of cytosol-exposed antigens. , 1988, Experimental cell research.
[23] Andreas Hoenger,et al. Visualisation of the actin cytoskeleton by cryo-electron microscopy. , 2002, Journal of cell science.
[24] Keith Burridge,et al. α-Actinin: Immunofluorescent localization of a muscle structural protein in nonmuscle cells , 1975, Cell.
[25] Tiina Lehto,et al. Observing structure, function and assembly of single proteins by AFM. , 2002, Progress in biophysics and molecular biology.
[26] M. Abercrombie,et al. The locomotion of fibroblasts in culture. IV. Electron microscopy of the leading lamella. , 1971, Experimental cell research.
[27] K. Burridge,et al. An interaction between alpha-actinin and the beta 1 integrin subunit in vitro , 1990, The Journal of cell biology.
[28] Josephine C. Adams,et al. Regulation of protrusive and contractile cell-matrix contacts. , 2002, Journal of cell science.
[29] A. Bershadsky,et al. Cytoskeleton of mouse embryo fibroblasts. Electron microscopy of platinum replicas. , 1984, European journal of cell biology.
[30] B. Geiger,et al. Immunoelectron microscope studies of membrane-microfilament interactions: distributions of alpha-actinin, tropomyosin, and vinculin in intestinal epithelial brush border and chicken gizzard smooth muscle cells , 1981, The Journal of cell biology.
[31] Dietmar J. Manstein,et al. Nanometer targeting of microtubules to focal adhesions , 2003, The Journal of cell biology.
[32] C. le Grimellec,et al. Atomic force microscopy of renal cells: limits and prospects. , 1998, Kidney international. Supplement.
[33] J. Heath,et al. Cell to substratum contacts of chick fibroblasts and their relation to the microfilament system. A correlated interference-reflexion and high-voltage electron-microscope study. , 1978, Journal of cell science.
[34] Wolfgang Baumeister,et al. From proteomic inventory to architecture , 2005, FEBS letters.
[35] A. S. G. Curtis,et al. THE MECHANISM OF ADHESION OF CELLS TO GLASS , 1964, The Journal of cell biology.
[36] M. Abercrombie,et al. The locomotion of fibroblasts in culture. II. "RRuffling". , 1970, Experimental cell research.
[37] A. M. Meijne,et al. Immuno-EM localization of the beta 1 integrin subunit in wet-cleaved fibronectin-adherent fibroblasts. , 1994, Journal of cell science.
[38] M. Abercrombie,et al. The locomotion of fibroblasts in culture. 3. Movements of particles on the dorsal surface of the leading lamella. , 1970, Experimental cell research.
[39] E. Zamir,et al. Molecular complexity and dynamics of cell-matrix adhesions. , 2001, Journal of cell science.
[40] B. Geiger,et al. Microfilament-organizing centers in areas of cell contact: cytoskeletal interactions during cell attachment and locomotion , 1984, The Journal of cell biology.
[41] A. Bretscher,et al. Fimbrin, a new microfilament-associated protein present in microvilli and other cell surface structures , 1980, The Journal of cell biology.
[42] Kenneth M. Yamada,et al. Cell interactions with three-dimensional matrices. , 2002, Current opinion in cell biology.
[43] T. Svitkina,et al. Plectin sidearms mediate interactions of intermediate filaments with microtubules and other components of the cytoskeleton. , 1998, The Biological bulletin.
[44] C. Turner,et al. Focal adhesions: transmembrane junctions between the extracellular matrix and the cytoskeleton. , 1988, Annual review of cell biology.
[45] K. Fujiwara,et al. Isolation and contraction of the stress fiber. , 1998, Molecular biology of the cell.
[46] I. Singer. The fibronexus: a transmembrane association of fibronectin-containing fibers and bundles of 5 nm microfilaments in hamster and human fibroblasts , 1979, Cell.
[47] K. Anderson,et al. Actin microridges characterized by laser scanning confocal and atomic force microscopy , 2005, FEBS letters.
[48] W. T. Chen,et al. Immunoelectron microscopic studies of the sites of cell-substratum and cell-cell contacts in cultured fibroblasts , 1982, The Journal of cell biology.