4.4 Article

Using Situs for flexible and rigid-body fitting of multiresolution single-molecule data

Journal

JOURNAL OF STRUCTURAL BIOLOGY
Volume 133, Issue 2-3, Pages 193-202

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1006/jsbi.2000.4350

Keywords

docking; volumetric registration; topology representing neural networks; visualization; macromolecular assemblies; induced fit

Funding

  1. NCRR NIH HHS [P41-RR-12255-02] Funding Source: Medline
  2. NIGMS NIH HHS [1R01-GM62968-01] Funding Source: Medline

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We describe here a set of multiresolution visualization and docking procedures that we refer to as the Situs package. The package was developed to provide an efficient and robust method for the fitting of atomic structures into low-resolution data. The current release was optimized specifically for the visualization and docking of single molecules. A novel 3D graphics viewer, volslice3d, was developed for the package to provide an immersive virtual reality environment for measuring and rendering volumetric data sets. The precision of single-molecule, rigid-body docking was tested on simulated (noise-free) low-resolution density maps. For spatial resolutions near 20 Angstrom typically arising in electron microscopy image reconstructions, a docking precision on the order of 1 Angstrom can be achieved. The shape-matching score captured the correct solutions in all 10 trial cases and was sufficiently stringent to yield unique matches in 8 systems. Novel routines were developed for the flexible docking of atomic structures whose shape deviates from the corresponding low-resolution shape. Test calculations on isoforms of actin and lactoferrin demonstrate that the flexible docking faithfully reproduces conformational differences with a precision <2 Angstrom if atomic structures are locally conserved. (C) 2001 Academic Press.

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