Recent advances in macromolecular hydrodynamic modeling

被引:35
|
作者
Aragon, Sergio R. [1 ]
机构
[1] San Francisco State Univ, Dept Chem & Biochem, San Francisco, CA 94132 USA
关键词
Hydrodynamics; Proteins; Nucleic acids; Boundary elements; Molecular dynamics; TRANSPORT-PROPERTIES; FRICTIONAL COEFFICIENTS; MULTISUBUNIT STRUCTURES; GLOBULAR-PROTEINS; ARBITRARY SHAPE; SLOW MOTION; DIFFUSION; PARTICLES; CONSTANTS; RODLIKE;
D O I
10.1016/j.ymeth.2010.10.005
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The modern implementation of the boundary element method 1231 has ushered unprecedented accuracy and precision for the solution of the Stokes equations of hydrodynamics with stick boundary conditions. This article begins by reviewing computations with the program BEST of smooth surface objects such as ellipsoids, the dumbbell, and cylinders that demonstrate that the numerical solution of the integral equation formulation of hydrodynamics yields very high precision and accuracy. When BEST is used for macromolecular computations, the limiting factor becomes the definition of the molecular hydrodynamic surface and the implied effective solvation of the molecular surface. Studies on 49 different proteins, ranging in molecular weight from 9 to over 400 kDa, have shown that a model using a 1.1 angstrom thick hydration layer describes all protein transport properties very well for the overwhelming majority of them. In addition, this data implies that the crystal structure is an excellent representation of the average solution structure for most of them. In order to investigate the origin of a handful of significant discrepancies in some multimeric proteins (about -20% observed in the intrinsic viscosity), the technique of Molecular Dynamics simulation (MD) has been incorporated into the research program. A preliminary study of dimeric alpha-chymotrypsin using approximate implicit water MD is presented. In addition I describe the successful validation of modern protein force fields, ff03 and ff99SB, for the accurate computation of solution structure in explicit water simulation by comparison of trajectory ensemble average computed transport properties with experimental measurements. This work includes small proteins such as lysozyme, ribonuclease and ubiquitin using trajectories around 10 ns duration. We have also studied a 150 kDa flexible monoclonal IgG antibody, Trastuzumab, with multiple independent trajectories encompassing over 320 ns of simulation. The close agreement within experimental error of the computed and measured properties allows us to conclude that MD does produce structures typical of those in solution, and that flexible molecules can be properly described using the method of ensemble averaging over a trajectory. We review similar work on the study of a transfer RNA molecule and DNA oligomers that demonstrate that within 3% a simple uniform hydration model 1.1 angstrom thick provides agreement with experiment for these nucleic acids. In the case of linear oligomers, the precision can be improved close to 1% by a non-uniform hydration model that hydrates mainly in the DNA grooves, in agreement with high resolution X-ray diffraction. We conclude with a vista on planned improvements for the BEST program to decrease its memory requirements and increase its speed without sacrificing accuracy. (C) 2010 Elsevier Inc. All rights reserved.
引用
收藏
页码:101 / 114
页数:14
相关论文
共 50 条
  • [21] Macromolecular modeling and design in Rosetta: recent methods and frameworks
    Julia Koehler Leman
    Brian D. Weitzner
    Steven M. Lewis
    Jared Adolf-Bryfogle
    Nawsad Alam
    Rebecca F. Alford
    Melanie Aprahamian
    David Baker
    Kyle A. Barlow
    Patrick Barth
    Benjamin Basanta
    Brian J. Bender
    Kristin Blacklock
    Jaume Bonet
    Scott E. Boyken
    Phil Bradley
    Chris Bystroff
    Patrick Conway
    Seth Cooper
    Bruno E. Correia
    Brian Coventry
    Rhiju Das
    René M. De Jong
    Frank DiMaio
    Lorna Dsilva
    Roland Dunbrack
    Alexander S. Ford
    Brandon Frenz
    Darwin Y. Fu
    Caleb Geniesse
    Lukasz Goldschmidt
    Ragul Gowthaman
    Jeffrey J. Gray
    Dominik Gront
    Sharon Guffy
    Scott Horowitz
    Po-Ssu Huang
    Thomas Huber
    Tim M. Jacobs
    Jeliazko R. Jeliazkov
    David K. Johnson
    Kalli Kappel
    John Karanicolas
    Hamed Khakzad
    Karen R. Khar
    Sagar D. Khare
    Firas Khatib
    Alisa Khramushin
    Indigo C. King
    Robert Kleffner
    Nature Methods, 2020, 17 : 665 - 680
  • [22] Recent Advances of Hierarchical and Sequential Growth of Macromolecular Organic Structures on Surface
    Pigot, Corentin
    Dumur, Frederic
    MATERIALS, 2019, 12 (04)
  • [23] Recent advances in modeling stellar interiors
    Guzik, Joyce Ann
    ASTROPHYSICS AND SPACE SCIENCE, 2011, 336 (01) : 95 - 101
  • [24] Recent advances in modeling hugoniots with Cheetah
    Glaesemann, K. R.
    Fried, L. E.
    Shock Compression of Condensed Matter - 2005, Pts 1 and 2, 2006, 845 : 515 - 518
  • [25] Recent advances in modeling stellar interiors
    Joyce Ann Guzik
    Astrophysics and Space Science, 2011, 336 : 95 - 101
  • [26] Recent advances in modeling SERS and TERS
    Jensen, Lasse
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [27] Recent advances in topside profile modeling
    Pulinets, SA
    Depuev, VH
    Karpachev, AT
    Radicella, SM
    Danilkin, NP
    MODELLING THE TOPSIDE IONOSPHERE AND PLASMASPHERE, 2002, 29 (06): : 815 - 823
  • [28] Recent Advances in Concurrent Engineering Modeling
    Qian, Yan-jun
    Goh, Thong Ngee
    Lin, Jun
    PROCEEDINGS OF THE 5TH INTERNATIONAL ASIA CONFERENCE ON INDUSTRIAL ENGINEERING AND MANAGEMENT INNOVATION (IEMI2014), 2015, : 9 - 12
  • [29] Recent advances in modeling for cementitious materials
    Dolado, Jorge S.
    van Breugel, Klaas
    CEMENT AND CONCRETE RESEARCH, 2011, 41 (07) : 711 - 726
  • [30] Recent Advances in Modeling of Solidification Behavior
    Vitek, J. M.
    David, S. A.
    Babu, S. S.
    TRENDS IN WELDING RESEARCH, PROCEEDINGS, 2006, : 1 - +