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      A Markov-chain model description of binding funnels to enhance the ranking of docked solutions.

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          Abstract

          Within the crowded, seemingly chaotic environment of the cell, proteins are still able to find their binding partners. This is achieved via an ensemble of trajectories, which funnel them towards their functional binding sites, the binding funnel. Here, we characterize funnel-like energy structures on the global energy landscape using time-homogeneous finite state Markov chain models. These models are based on the idea that transitions can occur between structurally similar docking solutions, with transition probabilities determined by their difference in binding energy. Funnel-like energy structures are those containing solutions with very high equilibrium populations. Although these are found surrounding both near-native and false positive binding sites, we show that the removal of nonfunnel-like energy structures, by filtering away solutions with low maximum equilibrium population, can significantly improve the ranking of docked poses.

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          Author and article information

          Journal
          Proteins
          Proteins
          1097-0134
          0887-3585
          Dec 2013
          : 81
          : 12
          Affiliations
          [1 ] Biomolecular Modelling Laboratory, Cancer Research UK London Research Institute, London, WC2A 3LY, United Kingdom.
          Article
          10.1002/prot.24369
          23900714
          18c61f5c-8b3c-49cd-884a-14234cc56f53
          Copyright © 2013 Wiley Periodicals, Inc.
          History

          Markovian dynamics,SwarmDock,node occupancies,protein conformational states,protein-protein docking funnels,scoring protein complexes

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