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Analyzing and Building Nucleic Acid Structures with 3DNA
Published on: April 26, 2013
Geometric properties of nucleic acids with potential for autobuilding
Tim Gruene1, George M Sheldrick
1Department of Structural Chemistry, Georg-August-University Göttingen, Tammanstrasse 4, D-37077 Göttingen, Germany. tg@shelx.uni-ac.gwdg.de
Abstract:
Medium- to high-resolution X-ray structures of DNA and RNA molecules were investigated to find geometric properties useful for automated model building in crystallographic electron-density maps. We describe a simple method, starting from a list of electron-density 'blobs', for identifying backbone phosphates and nucleic acid bases based on properties of the local electron-density distribution. This knowledge should be useful for the automated building of nucleic acid models into electron-density maps. We show that the distances and angles involving C1' and the P atoms, using the pseudo-torsion angles \eta' and \theta\,' that describe the ...P-C1'-P-C1'... chain, provide a promising basis for building the nucleic acid polymer. These quantities show reasonably narrow distributions with asymmetry that should allow the direction of the phosphate backbone to be established.
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