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In Vitro Assay to Measure Phosphatidylethanolamine Methyltransferase Activity
Published on: January 5, 2016
Action of spermine on phosphate transport in liver mitochondria
Abstract:
Spermine, at concentrations similar to those normally present in the cytosol of liver cells, facilitates the transport of phosphate into mitochondria and thus its accumulation within the matrix space. Both mersalyl and N-ethylmaleimide (NEM) inhibit phosphate influx either in the absence or in the presence of spermine. These inhibitors also inhibit, but only partially, the efflux from mitochondria of phosphate generated within the matrix space by the hydrolysis of ATP induced by carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP) or the valinomycin-K+ system. The inhibition of phosphate efflux by both mersalyl and NEM is almost completely removed, unlike that of phosphate influx, by spermine. The possibility that spermine may induce phosphate efflux by damaging mitochondrial membranes and consequently inducing an unspecific permeability to phosphate is excluded by the full restoration of transmembrane potential once FCCP has been removed by albumin. Since spermine does not react with either thiol groups or thiol group reagents, the simplest explanation of the reported results is that the pathway of phosphate efflux is distinct from that of phosphate influx.
Insights
Spermine facilitates mitochondrial phosphate transport. It also enhances phosphate efflux, distinct from influx, and is unaffected by thiol-reactive inhibitors.
Area of Science:
- Mitochondrial physiology
- Cellular metabolism
Background:
- Spermine is a polyamine found in liver cell cytosol.
- Mitochondria regulate phosphate homeostasis crucial for ATP production.
Purpose of the Study:
- To investigate the role of spermine in mitochondrial phosphate transport.
- To elucidate the mechanisms of phosphate influx and efflux.
Main Methods:
- Utilized inhibitors like mersalyl and N-ethylmaleimide (NEM).
- Assessed phosphate transport using FCCP and valinomycin-K+ systems.
- Monitored mitochondrial membrane potential.
Main Results:
- Spermine facilitates phosphate influx into mitochondria.
- Spermine enhances mitochondrial phosphate efflux, unaffected by thiol inhibitors.
- Phosphate influx and efflux pathways appear distinct.
Conclusions:
- Spermine plays a dual role in mitochondrial phosphate transport.
- The distinct pathways for phosphate influx and efflux are highlighted.
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