FAST METHOD FOR DNA SIMULATIONS ON PARALLEL COMPUTERS

Information

  • Research Project
  • 2187742
  • ApplicationId
    2187742
  • Core Project Number
    R44GM050132
  • Full Project Number
    2R44GM050132-02
  • Serial Number
    50132
  • FOA Number
  • Sub Project Id
  • Project Start Date
    9/30/1995 - 28 years ago
  • Project End Date
    8/31/1997 - 26 years ago
  • Program Officer Name
  • Budget Start Date
    9/30/1995 - 28 years ago
  • Budget End Date
    8/31/1996 - 27 years ago
  • Fiscal Year
    1995
  • Support Year
    2
  • Suffix
  • Award Notice Date
    9/27/1995 - 28 years ago
Organizations

FAST METHOD FOR DNA SIMULATIONS ON PARALLEL COMPUTERS

The overall objective of the effort is to develop a comprehensive electrostatic molecular modeling software package to be implemented upon both serial and parallel computer platforms for application to DNA supercoiling. A central feature of the proposed method is an adaptive fast algorithm based on multipole and Taylor series expansions for computation of electrostatic energy and forces as well as the writhing number. In Phase I, a preliminary version of the method led to two orders of magnitude CPU reductions compared to direct summation for a 10,000 particle configuration. A parallel implementation was also developed and shown to scale with the number of processors and minimize interprocessor communication time. In Phase II, the fast analysis will be extended by developing parallel spatial partitioning techniques to maximize load balancing and optimize the fast algorithm performance, formally accounting for Debye-Huckel screening effects, and developing a suitable time stepping methodology for molecular dynamics applications. Enhancements to the elastic structural modeling of the DNA chain are also contemplated including direct computation of elastic constants from all-atom models. The analysis will be coupled to Monte Carlo/simulated annealing, deterministic optimization, and suitable time stepping codes to study DNA behavior. PROPOSED COMMERCIAL APPLICATION: The serial and parallel software ensuing from successful completion of the Phase II effort should be of general interest to the pharmaceutical and biotechnology industries. Efficient and reliable calculation of electrostatic interactions, which are frequently ignored or inappropriately approximated due to computational limitations, and improved structural representation of the DNA molecule, will make possible, among other applications, the routine study of highly charged ligand-receptor complexes, charged intercalative and groove binding drugs, and sequence-specific third oligonucleotide strands.

IC Name
NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES
  • Activity
    R44
  • Administering IC
    GM
  • Application Type
    2
  • Direct Cost Amount
  • Indirect Cost Amount
  • Total Cost
  • Sub Project Total Cost
  • ARRA Funded
  • CFDA Code
    821
  • Ed Inst. Type
  • Funding ICs
  • Funding Mechanism
  • Study Section
    ZRG7
  • Study Section Name
  • Organization Name
    CONTINUUM DYNAMICS, INC.
  • Organization Department
  • Organization DUNS
  • Organization City
    EWING
  • Organization State
    NJ
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    08618
  • Organization District
    UNITED STATES