Caged Protein Prenyltransferase Substrates: Tools for Understanding Protein Prenylation
- 28 August 2008
- journal article
- Published by Wiley in Chemical Biology & Drug Design
- Vol. 72 (3) , 171-181
- https://doi.org/10.1111/j.1747-0285.2008.00698.x
Abstract
Originally designed to block the prenylation of oncogenic Ras, inhibitors of protein farnesyltransferase currently in preclinical and clinical trials are showing efficacy in cancers with normal Ras. Blocking protein prenylation has also shown promise in the treatment of malaria, Chagas disease and progeria syndrome. A better understanding of the mechanism, targets and in vivo consequences of protein prenylation are needed to elucidate the mode of action of current PFTase (Protein Farnesyltransferase) inhibitors and to create more potent and selective compounds. Caged enzyme substrates are useful tools for understanding enzyme mechanism and biological function. Reported here is the synthesis and characterization of caged substrates of PFTase. The caged isoprenoid diphosphates are poor substrates prior to photolysis. The caged CAAX peptide is a true catalytically caged substrate of PFTase in that it is to not a substrate, yet is able to bind to the enzyme as established by inhibition studies and X‐ray crystallography. Irradiation of the caged molecules with 350 nm light readily releases their cognate substrate and their photolysis products are benign. These properties highlight the utility of those analogs towards a variety of in vitro and in vivo applications.Keywords
This publication has 57 references indexed in Scilit:
- Phasercrystallographic softwareJournal of Applied Crystallography, 2007
- Transition State Analysis of Model and Enzymatic Prenylation ReactionsJournal of the American Chemical Society, 2007
- Measurement of the α-Secondary Kinetic Isotope Effect for the Reaction Catalyzed by Mammalian Protein FarnesyltransferaseJournal of the American Chemical Society, 2006
- Control of the Yeast Cell Cycle with a Photocleavable α-Factor AnalogueAngewandte Chemie International Edition in English, 2006
- Unraveling the mechanism of the farnesyltransferase enzymeJBIC Journal of Biological Inorganic Chemistry, 2004
- Coot: model-building tools for molecular graphicsActa Crystallographica Section D-Biological Crystallography, 2004
- Crystallographic Analysis of CaaX Prenyltransferases Complexed with Substrates Defines Rules of Protein Substrate SelectivityJournal of Molecular Biology, 2004
- Refinement of Macromolecular Structures by the Maximum-Likelihood MethodActa Crystallographica Section D-Biological Crystallography, 1997
- [20] Processing of X-ray diffraction data collected in oscillation modePublished by Elsevier ,1997
- Synthetic, mechanistic and photochemical studies of phosphate esters of substituted benzoinsJournal of the Chemical Society, Perkin Transactions 1, 1992