Measurement of the α-Secondary Kinetic Isotope Effect for the Reaction Catalyzed by Mammalian Protein Farnesyltransferase
- 1 November 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 128 (47) , 15086-15087
- https://doi.org/10.1021/ja065838m
Abstract
Protein farnesytransferase (FTase) catalyzes the transfer of a 15-carbon prenyl group from farnesyl diphosphate (FPP) to the cysteine residue of target proteins and is a member of the newest class of zinc metalloenzymes that catalyze sulfur alkylation. Common substrates of FTase include oncogenic Ras proteins, and therefore inhibitors are under development for the treatment of various cancers. An increased understanding of the salient features of the chemical transition state of FTase may aid in the design of potent inhibitors and enhance our understanding of the mechanism of this class of zinc enzymes. To investigate the transition state of FTase we have used transient kinetics to measure the alpha-secondary 3H kinetic isotope effect at the sensitive C1 position of FPP. The isotope effect for the FTase single turnover reaction using a peptide substrate that is farnesylated rapidly is near unity, indicating that a conformational change, rather than farnesylation, is the rate-limiting step. To look at the chemical step, the kinetic isotope effect was measured as 1.154 +/- 0.006 for a peptide that is farnesylated slowly, and these data suggest that FTase proceeds via a concerted mechanism with dissociative character.Keywords
This publication has 20 references indexed in Scilit:
- Peptide Specificity of Protein Prenyltransferases Is Determined Mainly by Reactivity Rather than Binding AffinityBiochemistry, 2005
- Positively Charged Side Chains in Protein Farnesyltransferase Enhance Catalysis by Stabilizing the Formation of the Diphosphate Leaving GroupBiochemistry, 2004
- Kinetic Studies of Protein Farnesyltransferase Mutants Establish Active Substrate ConformationBiochemistry, 2003
- Protein prenylation: a pivotal posttranslational processBiochemical and Biophysical Research Communications, 2003
- Role of Metals in the Reaction Catalyzed by Protein FarnesyltransferaseBiochemistry, 2000
- Stereochemical Analysis of the Reaction Catalyzed by Yeast Protein FarnesyltransferaseThe Journal of Organic Chemistry, 1998
- ENZYMATIC TRANSITION STATES AND TRANSITION STATE ANALOG DESIGNAnnual Review of Biochemistry, 1998
- Transition-State Structure for the ADP-Ribosylation of Recombinant Giα1 Subunits by Pertussis ToxinBiochemistry, 1998
- Protein farnesyltransferase: kinetics of farnesyl pyrophosphate binding and product releaseBiochemistry, 1995
- Pre-steady-state transition-state analysis of the hydrolytic reaction catalyzed by purine nucleoside phosphorylaseBiochemistry, 1995