课题基金 / 基金详情

PROTEIN-PROTEIN AND PROTEIN-DNA ASSOCIATION IN SOLUTION

PROTEIN-PROTEIN AND PROTEIN-DNA ASSOCIATION IN SOLUTION
溶液中的蛋白质-蛋白质和蛋白质-DNA 缔合
批准号:
3284898
负责人:
SCOTT H NORTHRUP
金额:
$7.9万
依托单位国家:
美国
项目类别:
财政年份:
1985
资助国家:
美国
项目状态:
已结题
起止时间:
1985-09-25 至 1995-03-31

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英文摘要
DESCRIPTION: (Adapted from Applicant's Abstract) The proposed study will develop and employ theoretical methods to investigate protein-protein and protein-DNA association phenomena in aqueous media, dealing with both equilibrium and dynamical aspects. Attention will be especially directed toward the crucial solvent and electrolyte effects which mediate macromolecular interactions in physiological aqueous solutions. Specific projects include: (i) A study of protein-protein electrostatic interactions, with the development and application of several strategies which will allow the rapid computation of accurate protein-protein (and protein-nucleic acid) electrostatic interaction potentials to benefit Brownian dynamics simulations and other automated docking procedures requiring rapid calculation of energies from look-up tables; (ii) The continued refinement and testing of the Brownian dynamics simulation method by the inclusion and evaluation of limited surface atom flexibility and empirical methods for rapid computation of electrostatic forces. (Application will be made to association and electron transfer reactions in the cytochromes and mutants to further our understanding of the role of a variety of influences on cytochrome electron transfer); iii) Simulation of nonspecific binding of genome regulatory proteins to DNA by an adaptation of existing Brownian dynamics methodology to study nonspecific protein-DNA associations. (Dynamical aspects of nonspecific binding of cro repressor protein and the E. coli catabolite gene activator protein to B-DNA will be studied); and iv) Development of software for systematic searching of optimum docking conformations of protein-protein and protein-DNA complexes, allowing an automated force-guided exhaustive search of docked conformers which would avoid trapping in local energy minima with user-intervention.
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COMPUTATIONAL STUDIES OF LIGAND BINDING TO ENZYMES
COMPUTATIONAL STUDIES OF LIGAND BINDING TO ENZYMES
PROTEIN-PROTEIN AND PROTEIN-DNA ASSOCIATION IN SOLUTION
COMPUTATIONAL STUDIES OF PROTEIN ASSOCIATION IN SOLUTION