PPi-dependent phosphofructotransferase (phosphofructokinase) activity in the mollicutes (mycoplasma) Acholeplasma

Journal of Bacteriology
|January 1, 1986
PubMed

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.