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PMID: 722557 Published · ppublish English Journal Article

Efflux of inorganic phosphate from mammalian non-myelinated nerve fibres.

The Journal of physiology ·Vol. 282 ·1978-09-00 ·Pages 507-19

Ferrero J, Jirounek P, Rouiller M, Straub RW

Abstract

1. Uptake and release of radiophosphate were measured in desheathed rabbit vagus nerve. 2. During incubation in Locke containing 0.2 mM-[32P]phosphate a slow labelling of water soluble compounds of the nerve was found; the labelling of the non water soluble compounds was much smaller. During washing with inactive Locke, the label was almost entirely released from the water soluble compounds; the radioactivity of these compounds was therefore used as the basis for the calculation of the efflux rate constants. 3. The efflux of radiophosphate increased with increasing phosphate concentration of the washing fluid. 4. A similar effect of external phosphate on the efflux of radiophosphate was seen when the phosphate concentration was suddenly changed. The rate constants were in 0.2 mM-phosphate 1.29 X 10(-3) min-1, in 0.2 mM 1.95 X 10(-3) min-1, and in 2 mM 3.21 X 10(-3) min-1 at 37 degrees C. After changing the external solution the efflux reached a new level with a time constant of about 9 min. 5. Addition of arsenate also increased the efflux of radiophosphate; on a molar basis the effect of arsenate was slightly smaller than the effect of phosphate. 6. Addition of malate or malonate did not affect the efflux of radiophosphate. 7. When the Na of the Locke was replaced by Tris, the efflux of radiophosphate was lowered by 76%, the new level was reached with a time constant of 7.7 min. In Tris-Locke changes in external phosphate did not affect the phosphate efflux. 8. A lowering of the phosphate efflux by 52% was found in Li-Locke; the efflux was then no longer affected by the external phosphate concentration. 9. The effect of external phosphate on the efflux and in the radiophosphate was also measured at intermediate Na concentrations. At different Na concentrations the ratio between the Na dependent effluxes in 2 and 0.2 mM-phosphate was approximately equal to the ratio between the Na dependent influxes in 2 and 0.2 mM-phosphate. 10. The efflux of 22Na had a rate constant of 0.050 min-1 in Locke and 0.046 min-1 in Tris-Locke. 11. It is concluded that part of the efflux of phosphate is mediated by a Na-dependent transport system; the system appears to be able to exchange phosphate between the inside and the outside and to mediate net movements of phosphate in both directions.

MeSH Terms
Animals Arsenates/pharmacology Biological Transport/drug effects In Vitro Techniques Malates/pharmacology Nerve Fibers/metabolism Phosphates/metabolism,pharmacology Rabbits Sodium/metabolism,pharmacology Vagus Nerve/metabolism
Chemicals
Arsenates Malates Phosphates Sodium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ferrero J
Jirounek P
Rouiller M
Straub R W
References (13)
13 references, click to expand
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    Am J Physiol. 1963 Jul;205:107-11 PMID: 13952985
  2. Increase in efflux of inorganic phosphate during electrical activity in small non-myelinated nerve fibres.
    J Physiol. 1978 Jan;274:539-48 PMID: 625007
  3. Sodium-dependent influx of orthophosphate in mammalian non-myelinated nerve.
    J Physiol. 1976 Sep;260(3):667-86 PMID: 978572
  4. Efflux of inorganic phosphate from rabbit vagus in Locke and Na-free Locke [proceedings].
    J Physiol. 1976 Dec;263(1):215P-216P PMID: 1011156
  5. Phosphate transport into brush-border membrane vesicles isolated from rat small intestine.
    Biochem J. 1976 Dec 15;160(3):467-74 PMID: 13784
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    Adv Exp Med Biol. 1977;81:333-44 PMID: 899929
  7. Renal phosphate transport: inhomogeneity of local proximal transport rates and sodium dependence.
    Pflugers Arch. 1975;356(4):287-98 PMID: 1171445
  8. The movements of labelled ions in mammalian non-myelinated nerve fibres.
    J Physiol. 1965 Jul;179(2):333-67 PMID: 5853895
  9. Uptake of orthophosphate by rabbit vagus nerve fibres.
    J Physiol. 1975 Jun;247(3):759-71 PMID: 1170320
  10. Phosphate transport in Escherichia coli.
    Biochim Biophys Acta. 1971 Aug 13;241(2):494-506 PMID: 4334147
  11. Phosphate transport by isolated renal brush border vesicles.
    Pflugers Arch. 1976 Mar 30;362(2):147-56 PMID: 4766
  12. Phosphate transport in rat liver mitochondria. Kinetics and energy requirements.
    J Biol Chem. 1974 Apr 25;249(8):2593-8 PMID: 4822505
  13. Phosphorus metabolism of intact crab nerve and its relation to the active transport of ions.
    J Physiol. 1965 Sep;180(2):383-423 PMID: 4221747
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1978-09-00
Pages
507-19
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1282754
Subset
IM
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