Literature DB >> 19280183

Hydrodynamic multibead modeling: problems, pitfalls, and solutions. 1. Ellipsoid models.

Peter Zipper1, Helmut Durchschlag.   

Abstract

The shape of macromolecules can be approximated by filling models, if both hydrodynamic and scattering properties should be predicted. Modeling of complex biological macromolecules, such as oligomeric proteins, or of molecule details calls for usage of many beads to preserve the original features. However, the calculation of precise values for structural and hydrodynamic parameters has to consider many problems and pitfalls. Among these, the huge number of beads required for modeling details and the choice of appropriate volume corrections for the calculation of intrinsic viscosities are pestering problems to date. As a first step to tackle these problems, various tests with multibead models (ellipsoids of different axial ratios) were performed. The agreement of the predicted molecular properties with those derived from whole-body approaches can be used as evaluation criteria. Modification of previously available versions of García de la Torre's program HYDRO allows hydrodynamic modeling of macromolecules composed of a maximum of about 11,000 beads. Moreover, application of our recently suggested "reduced volume correction" enables a fast and efficient anticipation of intrinsic viscosities. Correct parameter predictions were obtained for all models analyzed. The data obtained were compared to the results of calculations based on HYDRO programs available to the public. The calculations revealed some unexpected results and allowed founded conclusions of general importance for precise calculations on multibead models (e.g., the requirement of calculations in the double-precision mode).

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Year:  2009        PMID: 19280183     DOI: 10.1007/s00249-009-0424-2

Source DB:  PubMed          Journal:  Eur Biophys J        ISSN: 0175-7571            Impact factor:   1.733


  11 in total

1.  The Protein Data Bank.

Authors:  H M Berman; J Westbrook; Z Feng; G Gilliland; T N Bhat; H Weissig; I N Shindyalov; P E Bourne
Journal:  Nucleic Acids Res       Date:  2000-01-01       Impact factor: 16.971

2.  Calculation of hydrodynamic properties of macromolecular bead models with overlapping spheres.

Authors:  B Carrasco; J García de la Torre; P Zipper
Journal:  Eur Biophys J       Date:  1999       Impact factor: 1.733

3.  Calculation of hydrodynamic properties of globular proteins from their atomic-level structure.

Authors:  J García De La Torre; M L Huertas; B Carrasco
Journal:  Biophys J       Date:  2000-02       Impact factor: 4.033

4.  Hydrodynamic properties of rigid particles: comparison of different modeling and computational procedures.

Authors:  B Carrasco; J García de la Torre
Journal:  Biophys J       Date:  1999-06       Impact factor: 4.033

5.  Improved calculation of rotational diffusion and intrinsic viscosity of bead models for macromolecules and nanoparticles.

Authors:  J García de la Torre; G del Rio Echenique; A Ortega
Journal:  J Phys Chem B       Date:  2007-02-08       Impact factor: 2.991

6.  Hydrodynamic modeling: the solution conformation of macromolecules and their complexes.

Authors:  Olwyn Byron
Journal:  Methods Cell Biol       Date:  2008       Impact factor: 1.441

7.  Modeling complex biological macromolecules: reduction of multibead models.

Authors:  Peter Zipper; Helmut Durchschlag
Journal:  J Biol Phys       Date:  2008-05-09       Impact factor: 1.365

8.  The ELLIPS suite of macromolecular conformation algorithms.

Authors:  S E Harding; J C Horton; H Cölfen
Journal:  Eur Biophys J       Date:  1997       Impact factor: 1.733

9.  HYDRO: a computer program for the prediction of hydrodynamic properties of macromolecules.

Authors:  J Garcia de la Torre; S Navarro; M C Lopez Martinez; F G Diaz; J J Lopez Cascales
Journal:  Biophys J       Date:  1994-08       Impact factor: 4.033

Review 10.  Hydrodynamic properties of complex, rigid, biological macromolecules: theory and applications.

Authors:  J G Garcia de la Torre; V A Bloomfield
Journal:  Q Rev Biophys       Date:  1981-02       Impact factor: 5.318

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  3 in total

1.  Hydrodynamic multibead modeling: problems, pitfalls and solutions. 3. Comparison of new approaches for improved predictions of translational properties.

Authors:  Peter Zipper; Helmut Durchschlag
Journal:  Eur Biophys J       Date:  2013-05-23       Impact factor: 1.733

2.  Acceleration and Parallelization of ZENO/Walk-on-Spheres.

Authors:  Derek Juba; Walid Keyrouz; Michael Mascagni; Mary Brady
Journal:  Procedia Comput Sci       Date:  2016

3.  Many-particle Brownian and Langevin Dynamics Simulations with the Brownmove package.

Authors:  Tihamér Geyer
Journal:  BMC Biophys       Date:  2011-04-13       Impact factor: 4.778

  3 in total

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