Abstract

Saccharomyces cerevisiae pyruvate kinase 1 (Pyk1) was demonstrated to be associated to an immunoprecipitate of yeast protein kinase A holoenzyme (HA-Tpk1.Bcy1) and to be phosphorylated in a cAMP-dependent process. Both glutathione S-transferase (GST)-Pyk1 and GST-Pyk2 were phosphorylated in vitro by the bovine heart protein kinase A (PKA) catalytic subunit and by immobilized yeast HA-Tpk1. The specificity constant for the phosphorylation of GST-Pyk1 and GST-Pyk2 by bovine catalytic subunit was in the range of the value for Leu-Arg-Arg-Ala-Ser-Leu-Gly (Kemptide). Both fusion proteins were phosphorylated in vivo, in intact cells overexpressing the protein, or in vitro using crude extracts, as source of protein kinase A, when a wild type strain was used but were not phosphorylated when using a strain with only one TPK gene with an attenuated mutation (tpk1(w1)). The effect of phosphorylation on Pyk activity was assayed in partially purified preparations from three strains, containing different endogenous protein kinase A activity levels. Pyk1 activity was measured at different phosphoenolpyruvate concentrations in the absence or in the presence of the activator fructose 1,6-bisphosphate at 1.5 mm. Preliminary kinetic results derived from the comparison of Pyk1 obtained from extracts with the highest versus those from the lowest protein kinase A activity indicate that the enzyme is more active upon phosphorylation conditions; in the absence of the activator it shows a shift in the titration curve for phosphoenolpyruvate to the left and an increase in the Hill coefficient, whereas in the presence of fructose 1,6-bisphosphate it shows an n(H) value of 1.4, as compared with an n(H) of 2 for the Pyk1 obtained from extracts with almost null protein kinase A activity.

Highlights

  • Protein phosphorylation is a universal regulatory mechanism; in eukaryotic cells it is a phenomenon with implications in almost every aspect of cell physiology and biochemistry

  • Preliminary kinetic results derived from the comparison of pyruvate kinase 1 (Pyk1) obtained from extracts with the highest versus those from the lowest protein kinase A activity indicate that the enzyme is more active upon phosphorylation conditions; in the absence of the activator it shows a shift in the titration curve for phosphoenolpyruvate to the left and an increase in the Hill coefficient, whereas in the presence of fructose 1,6bisphosphate it shows an nH value of 1.4, as compared with an nH of 2 for the Pyk1 obtained from extracts with almost null protein kinase A activity

  • The immunoprecipitates were washed with 0.2 M NaCl and assayed for protein kinase A (PKA) activity measuring the ratio of activity Ϫ/ϩ cAMP

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Summary

TABLE I List of strains and nomenclature

Mata leu ura his pep4⌬ Mata leu ura his pep4⌬ ϩ Ycp50-HATPK1 Mata leu ura his pep4⌬ ϩ Ycp50-HATPK1 ϩ YEp51-BCY1 Mata leu ura his pep4⌬ ϩ pEG(KG) Mat␣ leu ura his pep4⌬ bcy Mata his leu ura trp ade tpk1w1 tpk2::HIS3 tpk3::TRP1 bcy1::LEU2 Mata his leu ura trp ade tpk1w1 tpk2::HIS3 tpk3::TRP1 bcy1::LEU2 ϩ pYEX4T1-GSTYOR347C Mata his leu ura trp ade tpk1w1 tpk2::HIS3 tpk3::TRP1 bcy1::LEU2 ϩ pYEX4T1-GSTYAL038W. These strains have been previously described in the literature: a(18), b(13), c(19). These strains have been previously described in the literature: a(18), b(13), c(19). d Strains developed in this report

Genetic nomenclature
EXPERIMENTAL PROCEDURES
RESULTS
DISCUSSION
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