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Published on: December 19, 2011
PPi-dependent phosphofructotransferase (phosphofructokinase) activity in the mollicutes (mycoplasma) Acholeplasma
Abstract:
A PPi-dependent phosphofructotransferase (PPi-fructose 6-phosphate 1-phosphotransferase, EC 2.7.1.90) which catalyzes the conversion of fructose 6 phosphate (F-6-P) to fructose 1,6-bisphosphate (F-1, 6-P2) was isolated from a cytoplasmic fraction of Acholeplasma laidlawii B-PG9 and partially purified (430-fold). PPi was required as the phosphate donor. ATP, dATP, CTP, dCTP, GTP, dGTP, UTP, dUTP, ITP, TTP, ADP, or Pi could not substitute for PPi. The PPi-dependent reaction (2.0 mM PPi) was not altered in the presence of any of these nucleotides (2.0 mM) or in the presence of smaller (less than or equal to 300 microM) amounts of fructose 2,6-bisphosphate, (NH4)2SO4, AMP, citrate, GDP, or phosphoenolpyruvate. Mg2+ and a pH of 7.4 were required for maximum activity. The partially purified enzyme in sucrose density gradient experiments had an approximate molecular weight of 74,000 and a sedimentation coefficient of 6.7. A second form of the enzyme (molecular weight, 37,000) was detected, although in relatively smaller amounts, by using Blue Sepharose matrix when performing electrophoresis experiments. The back reaction, F-1, 6-P2 to F-6-P, required Pi; arsenate could substitute for Pi, but not PPi or any other nucleotide tested. The computer-derived kinetic constants (+/- standard deviation) for the reaction in the PPi-driven direction of F-1, 6-P2 were as follows: v, 38.9 +/- 0.48 mM min-1; Ka(PPi), 0.11 +/- 0.04 mM; Kb(F-6-P), 0.65 +/- 0.15 mM; and Kia(PPi), 0.39 +/- 0.11 mM. A. laidlawii B-PG9 required PPi not only for the PPi-phosphofructotransferase reaction which we describe but also for purine nucleoside kinase activity. a dependency unknown in any other organism. In A. laidlawii B-PG9, the PPi requirement may be met by reactions in this organism already known to synthesize PPi (e.g., dUTPase and purine nucleobase phosphoribosyltransferases). In almost all other cells, the conversion of F-6-P to F-1,6-P2 is ATP dependent, and the reaction is generally considered to be the rate-limiting step of glycolysis. The ability of A. laidlawii B-PG9 and one other acholeplasma to use PPi instead of ATP as an energy source may offer these cytochrome-deficient organisms some metabolic advantage and may represent a conserved metabolic remnant of an earlier evolutionary process.
Insights
Acholeplasma laidlawii B-PG9 utilizes pyrophosphate (PPi) instead of ATP for phosphofructotransferase activity, a unique metabolic pathway. This PPi dependency may provide a survival advantage for these organisms.
Area of Science:
- Biochemistry
- Microbiology
- Molecular Biology
Background:
- Phosphofructotransferase (PFK) is a key glycolytic enzyme, typically ATP-dependent, catalyzing fructose-6-phosphate to fructose-1,6-bisphosphate conversion.
- Acholeplasma laidlawii B-PG9, a bacterium, exhibits unique metabolic characteristics due to its lack of a cell wall and cytochrome system.
Purpose of the Study:
- To isolate and characterize a pyrophosphate-dependent phosphofructotransferase (PPi-PFK) from Acholeplasma laidlawii B-PG9.
- To investigate the enzyme's properties, cofactor requirements, and kinetic parameters.
- To explore the metabolic implications of PPi utilization in this organism.
Main Methods:
- Isolation and partial purification of PPi-PFK from the cytoplasmic fraction of A. laidlawii B-PG9.
- Enzyme activity assays with varying phosphate donors and effectors.
- Sucrose density gradient centrifugation and Blue Sepharose chromatography for molecular weight determination.
- Kinetic analysis to determine enzyme constants.
Main Results:
- A PPi-dependent PFK (EC 2.7.1.90) was purified 430-fold, requiring PPi as the sole phosphate donor.
- The enzyme exhibited optimal activity at pH 7.4 with Mg2+; molecular weights of 74,000 and 37,000 were detected.
- The reverse reaction (F-1,6-P2 to F-6-P) required inorganic phosphate (Pi), with arsenate as a substitute.
- Kinetic constants for the PPi-driven reaction were determined (vmax, Ka(PPi), Kb(F-6-P), Kia(PPi)).
Conclusions:
- A. laidlawii B-PG9 possesses a unique PPi-dependent PFK, distinct from the ubiquitous ATP-dependent enzyme.
- This PPi dependency extends to purine nucleoside kinase activity, a novel finding.
- The utilization of PPi may confer a metabolic advantage, potentially representing an ancient metabolic pathway.
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