Analysis of System Structure–Function Relationships
- 29 November 2007
- journal article
- research article
- Published by Wiley in ChemMedChem
- Vol. 2 (12) , 1774-1782
- https://doi.org/10.1002/cmdc.200700153
Abstract
Preclinical pharmacology studies conducted with experimental medicines currently focus on assessments of drug effects attributed to a drug's putative mechanism of action. The high failure rate of medicines in clinical trials, however, underscores that the information gathered from these studies is insufficient for forecasting drug effect profiles actually observed in patients. Improving drug effect predictions and increasing success rates of new medicines in clinical trials are some of the key challenges currently faced by the pharmaceutical industry. Addressing these challenges requires development of new methods for capturing and comparing “system-wide” structure–effect information for medicines at the cellular and organism levels. The current investigation describes a strategy for moving in this direction by using six different descriptor sets for examining the relationship between molecular structure and broad effect information of 1064 medicines at the cellular and the organism level. To compare broad drug effect information between different medicines, information spectra for each of the 1064 medicines were created, and the similarity between information spectra was determined through hierarchical clustering. The structure–effect relationships ascertained through these comparisons indicate that information spectra similarity obtained through preclinical ligand binding experiments using a model proteome provide useful estimates for the broad drug effect profiles of these 1064 medicines in organisms. This premise is illustrated using the ligand binding profiles of selected medicines in the dataset as biomarkers for forecasting system-wide effect observations of medicines that were not included in the incipient 1064-medicine analysis.Keywords
This publication has 13 references indexed in Scilit:
- High-throughput electronic biology: mining information for drug discoveryNature Reviews Drug Discovery, 2007
- Investigating the Molecular Basis of Drug Action and Response: Chemocentric Genomics and ProteomicsCurrent Drug Targets, 2006
- Molecular similarity and diversity in chemoinformatics: From theory to applicationsMolecular Diversity, 2006
- Analysis of drug-induced effect patterns to link structure and side effects of medicinesNature Chemical Biology, 2005
- Biospectra Analysis: Model Proteome Characterizations for Linking Molecular Structure and Biological ResponseJournal of Medicinal Chemistry, 2005
- Fast Small Molecule Similarity Searching with Multiple Alignment Profiles of Molecules Represented in One-DimensionJournal of Medicinal Chemistry, 2005
- Biological spectra analysis: Linking biological activity profiles to molecular structureProceedings of the National Academy of Sciences, 2004
- Predicting undesirable drug interactions with promiscuous proteins in silicoDrug Discovery Today, 2004
- Do Structurally Similar Molecules Have Similar Biological Activity?Journal of Medicinal Chemistry, 2002
- Chemical Similarity SearchingJournal of Chemical Information and Computer Sciences, 1998