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      Diffuse X-ray Scattering from Correlated Motions in a Protein Crystal

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      bioRxiv

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          Abstract

          Protein dynamics are integral to biological function, yet few techniques are sensitive to collective atomic motions. A long-standing goal of X-ray crystallography has been to combine structural information from Bragg diffraction with dynamic information contained in the diffuse scattering background. However, the origin of macromolecular diffuse scattering has been poorly understood, limiting its applicability. We present a detailed diffuse scattering map from triclinic lysozyme that resolves both inter- and intramolecular correlations. These correlations are studied theoretically using both all-atom molecular dynamics and simple vibrational models. Although lattice dynamics reproduce most of the diffuse pattern, protein internal dynamics, which include hinge-bending motions, are needed to explain the short-ranged correlations revealed by Patterson analysis. These insights lay the groundwork for animating crystal structures with biochemically relevant motions.

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          Author and article information

          Journal
          bioRxiv
          October 17 2019
          Article
          10.1101/805424
          d5a92fc8-0096-4fa2-b6a7-cb16f615040e
          © 2019
          History

          Biophysics,Biotechnology
          Biophysics, Biotechnology

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