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Titlebook: Mechanics of Elastic Biomolecules; Wolfgang A. Linke,Henk Granzier,Miklós S. Z. Kelle Book 2003 Springer Science+Business Media Dordrecht

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Micromechanical studies of mitotic chromosomes then studied by micromanipulation and microfluidic biochemical techniques. These experiments reveal that chromosomes have well-behaved elastic response over a fivefold range of stretching, with an elastic modulus similar to that of a loosely tethered polymer network. Perturbation by microfluidic’ s
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Species variations in cDNA sequence and exon splicing patterns in the extensible I-band region of caegion was determined for several mammalian species. Contiguous sequences of 3749, 12,230, 6602, and 11,850 base pairs have been obtained for the rat N2B, rat N2BA, dog N2B, and dog N2BA isoforms respectively. The length of the PEVK region of the N2B isoform did not correlate with rest tension proper
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Unfolding of titin domains studied by molecular dynamics simulationstrated in atomic force microscopy and optical tweezer experiments to involve the reversible unfolding of individual immunoglobulin-like (Ig) domains. We have used steered molecular dynamics (SMD), a novel computer simulation method, to investigate the mechanical response of single titin Ig domains u
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Mechanical response of single filamin A (ABP-280) molecules and its role in the actin cytoskeletonilamin A also links the actin cytoskeleton to the plasma membrane via its association with various kinds of membrane proteins. Recent new findings strongly support that filamin A plays important roles in the mechanical stability of plasma membrane and cortex, formation of cell shape, mechanical resp
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