A protein expression database for the molecular pharmacology of cancer
- 1 January 1997
- journal article
- pharmacological and-toxicological-application
- Published by Wiley in Electrophoresis
- Vol. 18 (3-4) , 647-653
- https://doi.org/10.1002/elps.1150180351
Abstract
In the last six years, the Developmental Therapeutics Program (DTP) of the US National Cancer Institute (NCI) has screened over 60 000 chemical compounds and a larger number of natural product extracts for their ability to inhibit growth of 60 different cancer cell lines representing different organs of origin. Whereas inhibition of the growth of one cancer cell type gives no information on drug specificity, the relative growth inhibitory activities against 60 different cells constitute patterns that encode detailed information on mechanisms of action and resistance (as reviewed in Boyd and Paull, Drug Devel. Res. 1995, 34, 19–109 and Weinstein et al., Science 1997, 275, 343–349). In order to correlate the patterns of activity with properties of the cells, we and other laboratories are characterizing the cells with respect to a large number of factors at the DNA, mRNA, and protein levels. As part of that effort, we have developed a two-dimensional gel electrophoresis (2-DE) protein expression database covering all 60 cell types (Buolamwini et al., submitted). Here we present analyses of the correlations among protein spots (i) in terms of their patterns of expression and (ii) in terms of their apparent relationships to the pharmacology of a set of 3989 screened compounds. The correlations tend to be stronger for the latter than for the former, suggesting that the spots have more robust signatures in terms of the pharmacology than in terms of expression levels. Links to pertinent databases and tools of analysis will be updated progressively at http://www.nci.nih.gov/intra/lmp/jnwbio.htm and http://epnwsl.ncifcrf.gov:2345/dis3d/dtp.html.Keywords
This publication has 12 references indexed in Scilit:
- An Information-Intensive Approach to the Molecular Pharmacology of CancerScience, 1997
- Twenty years of two‐dimensional electrophoresis: Past, present and futureElectrophoresis, 1996
- Generation of a drug resistance profile by quantitation of mdr-1/P-glycoprotein in the cell lines of the National Cancer Institute Anticancer Drug Screen.Journal of Clinical Investigation, 1995
- Some practical considerations and applications of the national cancer institute in vitro anticancer drug discovery screenDrug Development Research, 1995
- Information resources for liposome research: The drug discovery program of the u.s. national cancer instituteJournal of Liposome Research, 1995
- Use of the Kohonen Self-organizing Map to Study the Mechanisms of Action of Chemotherapeutic AgentsJNCI Journal of the National Cancer Institute, 1994
- Predictive statistics and artificial intelligence in the U.S. National Cancer Institute's drug discovery program for cancer and AIDSThe International Journal of Cell Cloning, 1994
- Neural Computing in Cancer Drug Development: Predicting Mechanism of ActionScience, 1992
- Feasibility of a High-Flux Anticancer Drug Screen Using a Diverse Panel of Cultured Human Tumor Cell LinesJNCI Journal of the National Cancer Institute, 1991
- Display and Analysis of Patterns of Differential Activity of Drugs Against Human Tumor Cell Lines: Development of Mean Graph and COMPARE AlgorithmJNCI Journal of the National Cancer Institute, 1989