Abstract

The prsA1 allele, specifying a mutant Escherichia coli phosphoribosylpyrophosphate (PRPP) synthetase, has been cloned. The mutation was shown by nucleotide sequence analysis to result from substitution of Asp-128 (GAT) in the wild type by Ala (GCT) in prsA1. This alteration was confirmed by chemical determination of the amino acid sequence of a tryptic peptide derived from the purified mutant enzyme. The mutation lies at the N-terminal end of a 16 residue sequence that is highly conserved in E. coli, Bacillus subtilis, and rat PRPP synthetases and has the following consensus sequence: DLHAXQIQGFFDI/VPI/VD. There was little alteration in the Km for ribose 5-phosphate. The Km for ATP of the mutant enzyme was increased 27-fold when Mg2+ was the activating cation but only 5-fold when Mn2+ was used. Maximal velocities of the wild type and mutant enzymes were the same. The mutant enzyme has a 6-fold lower affinity for Ca2+, as judged by the ability of Ca2+ to inhibit the reaction in the presence of 10 mM Mg2+. Wild type PRPP synthetase is subject to product inhibition by AMP, but AMP inhibition of the prsA1 mutant enzyme could not be detected. It has been previously proposed that a divalent cation binds to PRPP synthetase and serves as a bridge to the alpha-phosphate of ATP and AMP at the active site. The prsA1 mutation appears to alter this divalent cation site.

Highlights

  • Phosphoribosylpyrophosphate (PRPP)’synthetasecataandthattheenzyme-bounddivalentcation is involvedin lyzes a pyrophosphoryl transfer from ATP to Rib-5-P

  • DNA nucleotide sequence determinationwas by a dideoxy chain termination method from double-stranded plasmid templates(Chenand Seeburg, 1985)

  • The amino acid sequence of the tryptic peptide was determined by automated Edman degradation on an Applied Biosystems Model 470A protein sequenator followedby analysis of the phenylthiohydantoin-amino acid derivatives by reverse phase HPLC

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Summary

Mutant PRPP Synthetase

L. Boe Hove-Jensen (1983) Nilsson and Hove-Jensen (1987) Hem+ transductant of H0371 with Pl(H072) TetR transductantof BOE71 with Pl(H0371) Hem+ transductant of H0483 with Pl(H0376). The supernatant fluid was made 5% saturated with ammonium sulfate (106.4 g was added to 1900 ml of supernatant solution over a period of 30 min). The precipitate was dissolved in 105 ml of buffer and titrated topH 7.5 with 0.5 M KOH. This fraction contained 1.0 g of pure protein. The amino acid sequence of the tryptic peptide was determined by automated Edman degradation on an Applied Biosystems Model 470A protein sequenator followedby analysis of the phenylthiohydantoin-amino acid derivatives by reverse phase HPLC

RESULTS
DISCUSSION
Allof the results of kinetic studies of the purified prsAl
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