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Structure-based drug design: from nucleic acid to membrane protein targets.


ABSTRACT: The in silico methods for drug discovery are becoming increasingly powerful and useful. That, in combination with increasing computer processor power, in our case using a novel distributed computing grid, has enabled us to greatly enhance our virtual screening efforts. Herein we review some of these efforts using both receptor and ligand-based virtual screening, with the goal of finding new anti-cancer agents. In particular, nucleic acids are a neglected set of targets, especially the different morphologies of duplex, triplex, and quadruplex DNA, many of which have increasing biological relevance. We also review examples of molecular modeling to understand receptors and using virtual screening against G-protein coupled receptor membrane proteins.

SUBMITTER: Dailey MM 

PROVIDER: S-EPMC3143464 | biostudies-literature | 2009 Jun

REPOSITORIES: biostudies-literature

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Structure-based drug design: from nucleic acid to membrane protein targets.

Dailey Magdalena M MM   Hait Chayanendu C   Holt Patrick A PA   Maguire Jon M JM   Meier Jason B JB   Miller M Clarke MC   Petraccone Luigi L   Trent John O JO  

Experimental and molecular pathology 20090131 3


The in silico methods for drug discovery are becoming increasingly powerful and useful. That, in combination with increasing computer processor power, in our case using a novel distributed computing grid, has enabled us to greatly enhance our virtual screening efforts. Herein we review some of these efforts using both receptor and ligand-based virtual screening, with the goal of finding new anti-cancer agents. In particular, nucleic acids are a neglected set of targets, especially the different  ...[more]

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