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Evidence indicating that pig renal phosphate-activated glutaminase has a functionally predominant external

E Kvamme1, I A Torgner, B Roberg

  • 1Neurochemical Laboratory, Preclinical Medicine, University of Oslo, Norway.

Insights

Sulfhydryl reagents indicate phosphate-activated glutaminase is on the outer side of the inner mitochondrial membrane. Glutamine transport into mitochondria is not rate-limiting for this enzyme.

Area of Science:

  • Mitochondrial biochemistry
  • Enzyme localization
  • Renal physiology

Background:

  • Phosphate-activated glutaminase plays a key role in renal ammonia production.
  • Understanding the enzyme's localization is crucial for elucidating its regulatory mechanisms.

Purpose of the Study:

  • To determine the submitochondrial localization of phosphate-activated glutaminase in pig renal mitochondria.
  • To investigate the role of sulfhydryl groups and transporters in glutaminase activity and glutamine transport.

Main Methods:

  • Inhibition studies using sulfhydryl reagents (mersalyl, N-ethylmaleimide) on intact and sonicated mitochondria.
  • Kinetic analysis of glutamine hydrolysis.
  • Investigation of glutamine transport using calcium and alanine as modulators.
  • Enzyme desensitization studies and radiolabeled glutamine uptake assays.

Main Results:

  • Sulfhydryl reagents inhibited glutaminase in intact mitochondria, suggesting external regulatory sites, but not beta-hydroxybutyrate dehydrogenase.
  • Evidence for a distinct glutamine transporter sensitive to mersalyl was found.
  • Glutamine transport was inhibited by calcium and alanine, indicating it's not rate-limiting.
  • Desensitization to inhibition occurred under optimal assay conditions or with Triton X-100 treatment.
  • Glutamate derived from external glutamine was released without mixing with the endogenous pool.

Conclusions:

  • Phosphate-activated glutaminase is predominantly located on the external side of the inner mitochondrial membrane.
  • A specific glutamine transporter exists, and its activity is modulated by calcium and alanine.
  • Glutamine uptake is not the rate-limiting step for glutaminase activity in pig renal mitochondria.

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