Published January 2013 | Version public
Journal Article

The emerging field of chemo- and pharmacoproteomics

Creators

Abstract

The emerging field of chemo- and pharmacoproteomics studies the mechanisms of action of bioactive molecules in a systems pharmacology context. In contrast to traditional drug discovery, pharmacoproteomics integrates the mechanism of a drug's action, its side effects including toxicity, and the discovery of new drug targets in a single approach. Thus, it determines early favorable (e.g. multiple kinase target in cancer drugs) and unfavorable (e.g. side effects) polypharmacology. Target profiling is accomplished using either active site-labeling probes or immobilized drugs. This strategy identifies direct targets and has in fact enabled even the determination of binding curves and half maximum inhibitory concentrations of these targets. In addition, the enrichment greatly reduces the complexity of the proteome to be analyzed by quantitative MS. Complementary to these approaches, global proteomics profiling studying drug treatment-induced changes in protein expression levels and/or post-translational modification status have started to become possible mostly due to significant improvements in instrumentation. Particularly, when using multidimensional separations, a considerable proteome depth of up to 10 000 proteins can be achieved with current state-of-the-art mass spectrometers and bioinformatics tools. In summary, chemo- and pharmacoproteomics has already contributed significantly to the identification of novel drug targets and their mechanisms of action(s). Aided by further technological advancements, this interdisciplinary approach will likely be used more broadly in the future.

Additional Information

© 2012 Wiley-VCH Verlag GmbH & Co. Received: August 20, 2012; Revised: November 6, 2012; Accepted: November 8, 2012. Article first published online: 22 Jan. 2013. This work was supported by the Beckman Institute and the Betty and Gordon Moore Foundation. I thank my current and former lab members for stimulating discussions on this subject. The author has declared no conflict of interest.

Additional details

Identifiers

Eprint ID
37249
DOI
10.1002/prca.201200091
Resolver ID
CaltechAUTHORS:20130301-120410221

Related works

Describes
10.1002/prca.201200091 (DOI)

Funding

Caltech Beckman Institute
Gordon and Betty Moore Foundation

Dates

Created
2013-03-01
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Updated
2021-11-09
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