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Titlebook: Controlled Nanoscale Motion; Nobel Symposium 131 Heiner Linke,Alf Månsson Book 2007 Springer-Verlag Berlin Heidelberg 2007 Nanotube.enzymes

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https://doi.org/10.1007/978-3-662-42950-1y ordered in the filament lattice of the muscle sarcomere. In contrast to this wellordered structure, most in vitro studies are performed with the contractile proteins in a disordered arrangement. Here we first review the existing in vitro motility assays and then consider how they can be improved b
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Nanodevices for Single Molecule Studies,ile existing technology enables the analysis of a variety of biological systems, new tools are needed for increasing the efficiency of current methods, and for developing new ones altogether. Interest has grown in single molecule analysis for these reasons.
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https://doi.org/10.1007/978-3-662-42945-7 is a bacterium 1 μm in diameter. It swims in a nutrient medium, counting molecules of interest as it goes along. On the basis of these counts, it accumulates in regions that it deems more favorable. How does nature design, construct, and operate such a nanomachine?
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F. Holle Prof. Dr.,W. Hart Priv.-Doz. Dr.stinct mechanisms (i) electrostatic interactions, based on asymmetric shape of electrostatic potential inside the pore, and (ii) electro-mechanical gate placed at the entrance of a conical pore, responsive to the external field applied across the membrane. Biosensors consisting of single conical nanotubes are discussed as well.
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