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      Quantitative approach to facilitated diffusion with intersegmental jumping

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          Abstract

          We study the impact of DNA coiling on the search rate of proteins moving along the DNA contour interspersed by three-dimensional (3D) bulk excursions. When the DNA is coiled proteins performing short 3D hops along a DNA segment can be captured by foreign DNA segments that have looped back close to the original segment. These intersegmental jumps are shown to enhance the search rate for a specific site on the DNA by lowering the tendency to resample previously visited sites on the DNA. The model developed here offers a quantitative description of recent single molecule experiments on facilitated diffusion of restriction enzymes EcoRV.

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          Leapover lengths and first passage time statistics for L\'evy flights

          Exact results for the first passage time and leapover statistics of symmetric and one-sided Levy flights (LFs) are derived. LFs with stable index alpha are shown to have leapover lengths, that are asymptotically power-law distributed with index alpha for one-sided LFs and, surprisingly, with index alpha/2 for symmetric LFs. The first passage time distribution scales like a power-law with index 1/2 as required by the Sparre Andersen theorem for symmetric LFs, whereas one-sided LFs have a narrow distribution of first passage times. The exact analytic results are confirmed by extensive simulations.
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            Author and article information

            Journal
            16 December 2008
            Article
            0812.3109
            24771325-dae1-4653-a57a-54ff3478b7fe

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

            History
            Custom metadata
            Proc. Natl. Acad. Sci. USA 106, 8204 (2009)
            4 pages, 2 figures, REVTeX
            cond-mat.stat-mech q-bio.BM

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