Yeast protein farnesyltransferase: A pre-steady-state kinetic analysis

被引:42
作者
Mathis, JR [1 ]
Poulter, CD [1 ]
机构
[1] UNIV UTAH, DEPT CHEM, SALT LAKE CITY, UT 84112 USA
关键词
D O I
10.1021/bi9629182
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Protein farnesyltransferase catalyzes alkylation of the cysteine in a carboxy-terminal CaaX motif where a is typically an aliphatic amino acid and X is alanine, methionine, serine, glutamine, or cysteine by a farnesyl residue. The modification enhances the lipophilicity of farnesylated proteins and promotes their association with membranes as part of their normal cellular function. Among the proteins modified by farnesyl residues is Ras, an important component in the signal transduction network for cell division that has been implicated in several forms of human cancer. In this paper, we describe isotope trapping, rapid quench, and single turnover experiments with the yeast enzyme using farnesyl diphosphate and the short peptide RTRCVIA as substrates. The kinetic constants for substrate binding, chemistry, and product release were determined from a fit of the differential equations describing the minimal catalytic mechanism to the kinetic data by numerical integration. Rate constants for chemistry and product release were 10.5 and 3.5 s(-1), respectively. The dissociation rate constant (33 s(-1)) for release of peptide from the ternary enzyme-substrate complex was three times larger than the rate constant for chemistry; The enthalpy of reaction, Delta H-rxn = -17 +/- 1 kcal/mol for farnesylation of cysteine, was measured by microcalorimetry. Isotope trapping experiments revealed that the enzyme.farnesyl diphosphate complex was efficiently trapped by peptide but that the enzyme.peptide complex was not trapped by farnesyl diphosphate. These results are consistant with an ordered mechanism for formation of a catalytically competent ternary enzyme farnesyl diphosphate peptide complex.
引用
收藏
页码:6367 / 6376
页数:10
相关论文
共 49 条
[31]   ISOPRENOID DIPHOSPHATE UTILIZATION BY RECOMBINANT HUMAN FARNESYL-PROTEIN TRANSFERASE - INTERACTIVE BINDING BETWEEN SUBSTRATES AND A PREFERRED KINETIC PATHWAY [J].
POMPLIANO, DL ;
SCHABER, MD ;
MOSSER, SD ;
OMER, CA ;
SHAFER, JA ;
GIBBS, JB .
BIOCHEMISTRY, 1993, 32 (32) :8341-8347
[32]   STEADY-STATE KINETIC MECHANISM OF RAS FARNESYL-PROTEIN TRANSFERASE [J].
POMPLIANO, DL ;
RANDS, E ;
SCHABER, MD ;
MOSSER, SD ;
ANTHONY, NJ ;
GIBBS, JB .
BIOCHEMISTRY, 1992, 31 (15) :3800-3807
[33]  
Press W.H., 1992, NUMERICAL RECIPES FO
[34]   Chemical biology of protein isoprenylation methylation [J].
Rando, RR .
BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1996, 1300 (01) :5-16
[35]  
REISS Y, 1992, J BIOL CHEM, V267, P6403
[36]   IONIZATION ENTHALPIES OF SOME COMMON ZWITTERIONIC HYDROGEN-ION BUFFERS (HEPES, PIPES, HEPPS AND BES) FOR BIOLOGICAL-RESEARCH [J].
ROIG, T ;
BACKMAN, P ;
OLOFSSON, G .
ACTA CHEMICA SCANDINAVICA, 1993, 47 (09) :899-901
[37]  
Rose I A, 1980, Methods Enzymol, V64, P47
[38]   FARNESYL-PROTEIN TRANSFERASE AND GERANYLGERANYL-PROTEIN TRANSFERASE ASSAYS USING PHOSPHOCELLULOSE PAPER ABSORPTION [J].
ROSKOSKI, R ;
RITCHIE, P ;
GAHN, LG .
ANALYTICAL BIOCHEMISTRY, 1994, 222 (01) :275-280
[39]  
RUSSO A, 1988, METHOD BIOCHEM ANAL, V33, P165
[40]   ENZYMATIC COUPLING OF CHOLESTEROL INTERMEDIATES TO A MATING PHEROMONE PRECURSOR AND TO THE RAS PROTEIN [J].
SCHAFER, WR ;
TRUEBLOOD, CE ;
YANG, CC ;
MAYER, MP ;
ROSENBERG, S ;
POULTER, CD ;
KIM, SH ;
RINE, J .
SCIENCE, 1990, 249 (4973) :1133-1139