Related Experiment Videos
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.
Abstract:
Phosphate-activated glutaminase in intact pig renal mitochondria was inhibited 50-70% by the sulfhydryl reagents mersalyl and N-ethylmaleimide (0.3-1.0 mM), when assayed at pH 7.4 in the presence of no or low phosphate (10 mM) and glutamine (2 mM). However, sulfhydryl reagents added to intact mitochondria did not inhibit the SH-enzyme beta-hydroxybutyrate dehydrogenase (a marker of the inner face of the inner mitochondrial membrane), but did so upon addition to sonicated mitochondria. This indicates that the sulfhydryl reagents are impermeable to the inner membrane and that regulatory sulfhydryl groups for glutaminase have an external localization here. The inhibition observed when sulfhydryl reagents were added to intact mitochondria could not be attributed to an effect on a phosphate carrier, but evidence was obtained that pig renal mitochondria have also a glutamine transporter, which is inhibited only by mersalyl and not by N-ethylmaleimide. Mersalyl and N-ethylmaleimide showed nondistinguishable effects on the kinetics of glutamine hydrolysis, affecting only the apparent Vmax for glutamine and not the apparent Km calculated from linear Hanes-Woolf plots. Furthermore, both calcium (which activates glutamine hydrolysis), as well as alanine (which has no effect on the hydrolytic rate), inhibited glutamine transport into the mitochondria, indicating that transport of glutamine is not rate-limiting for the glutaminase reaction. Desenzitation to inhibition by mersalyl and N-ethylmaleimide occurred when the assay was performed under optimal conditions for phosphate activated glutaminase (i.e. in the presence of 150 mM phosphate, 20 mM glutamine and at pH 8.6). Desenzitation also occurred when the enzyme was incubated with low concentrations of Triton X-100 which did not affect the rate of glutamine hydrolysis. Following incubation with [14C]glutamine and correction for glutamate in contaminating subcellular particles, the specific activity of [14C]glutamate in the mitochondria was much lower than that of the surrounding incubation medium. This indicates that glutamine-derived glutamate is released from the mitochondria without being mixed with the endogenous pool of glutamate. The results suggest that phosphate-activated glutaminase has a functionally predominant external localization in the inner mitochondrial membrane.
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.