Reconstituting functional microtubule-barrier interactions.
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[1] J. Piehler,et al. Quantitative real-time imaging of protein-protein interactions by LSPR detection with micropatterned gold nanoparticles. , 2013, Analytical chemistry.
[2] A. Csikász-Nagy,et al. Spatial segregation of polarity factors into distinct cortical clusters is required for cell polarity control , 2013, Nature Communications.
[3] Anatoly V. Zaytsev,et al. Long tethers provide high-force coupling of the Dam1 ring to shortening microtubules , 2013, Proceedings of the National Academy of Sciences.
[4] Samara L. Reck-Peterson,et al. Engineered, harnessed, and hijacked: synthetic uses for cytoskeletal systems. , 2012, Trends in cell biology.
[5] Liedewij Laan,et al. End-on microtubule-dynein interactions and pulling-based positioning of microtubule organizing centers , 2012, Cell cycle.
[6] Frank Jülicher,et al. Cortical Dynein Controls Microtubule Dynamics to Generate Pulling Forces that Position Microtubule Asters , 2012, Cell.
[7] A. Hoenger,et al. GTPγS microtubules mimic the growing microtubule end structure recognized by end-binding proteins (EBs) , 2011, Proceedings of the National Academy of Sciences.
[8] T. Ferri,et al. Protein immobilization at gold–thiol surfaces and potential for biosensing , 2010, Analytical and bioanalytical chemistry.
[9] Manuel Théry,et al. Simple and rapid process for single cell micro-patterning. , 2009, Lab on a chip.
[10] Anna Akhmanova,et al. Tracking the ends: a dynamic protein network controls the fate of microtubule tips , 2008, Nature Reviews Molecular Cell Biology.
[11] Liedewij Laan,et al. Reconstitution of a microtubule plus-end tracking system in vitro , 2007, Nature.
[12] Samara L. Reck-Peterson,et al. Single-Molecule Analysis of Dynein Processivity and Stepping Behavior , 2006, Cell.
[13] Marcus Textor,et al. Nitrilotriacetic Acid Functionalized Graft Copolymers: A Polymeric Interface for Selective and Reversible Binding of Histidine‐Tagged Proteins , 2006 .
[14] J. McIntosh,et al. Force production by disassembling microtubules , 2005, Nature.
[15] M. Dogterom,et al. Three-dimensional control of protein patterning in microfabricated devices. , 2005, Nano letters.
[16] S. Lata,et al. High-affinity adaptors for switchable recognition of histidine-tagged proteins. , 2005, Journal of the American Chemical Society.
[17] G. Whitesides,et al. Self-assembled monolayers of thiolates on metals as a form of nanotechnology. , 2005, Chemical reviews.
[18] S. Lata,et al. Stable and functional immobilization of histidine-tagged proteins via multivalent chelator headgroups on a molecular poly(ethylene glycol) brush. , 2005, Analytical chemistry.
[19] K. Sawin,et al. Role of microtubules and tea1p in establishment and maintenance of fission yeast cell polarity , 2004, Journal of Cell Science.
[20] Marileen Dogterom,et al. Dynamic instability of microtubules is regulated by force , 2003, The Journal of cell biology.
[21] Ronald D Vale,et al. The Molecular Motor Toolbox for Intracellular Transport , 2003, Cell.
[22] J. Hubbell,et al. Poly(l-lysine)-g-Poly(ethylene glycol) Layers on Metal Oxide Surfaces: Attachment Mechanism and Effects of Polymer Architecture on Resistance to Protein Adsorption† , 2000 .
[23] G. López,et al. Peptides, antibodies, and FRET on beads in flow cytometry: A model system using fluoresceinated and biotinylated beta-endorphin. , 1999, Cytometry.
[24] B. Yurke,et al. Measurement of the force-velocity relation for growing microtubules. , 1997, Science.
[25] J. McIntosh,et al. Minus-end-directed motion of kinesin–coated microspheres driven by microtubule depolymerization , 1995, Nature.
[26] Libchaber,et al. Phase diagram of microtubules. , 1994, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[27] A. Hyman,et al. Role of GTP hydrolysis in microtubule dynamics: information from a slowly hydrolyzable analogue, GMPCPP. , 1992, Molecular biology of the cell.
[28] M. Kirschner,et al. Dynamic instability of microtubule growth , 1984, Nature.
[29] Liedewij Laan,et al. In vitro assays to study force generation at dynamic microtubule ends. , 2010, Methods in cell biology.
[30] I. A. Telley,et al. Fluorescence microscopy assays on chemically functionalized surfaces for quantitative imaging of microtubule, motor, and +TIP dynamics. , 2010, Methods in cell biology.
[31] T. Mitchison,et al. Microtubule polymerization dynamics. , 1997, Annual review of cell and developmental biology.
[32] Green Nm,et al. Avidin and streptavidin. , 1990 .
[33] E. Hochuli,et al. New metal chelate adsorbent selective for proteins and peptides containing neighbouring histidine residues. , 1987, Journal of chromatography.