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PMID: 4887195 Published · ppublish English Journal Article

Acceleration of gluconeogenesis from propionate by Dl-carnitine in the rat kidney cortex.

The Biochemical journal ·Vol. 111 ·No. 1 ·1969-01-00 ·Pages 69-81

Weidemann MJ, Krebs HA

Abstract

1. The rate of gluconeogenesis from propionate in rat kidney-cortex slices was stimulated up to 3.5-fold by dl-carnitine and by bicarbonate, and was inhibited by inorganic phosphate or high concentrations of propionate (above 3mm). 2. The stimulatory effect of carnitine was dependent on the bicarbonate concentration and could be replaced at low propionate concentration by addition of 25mm-bicarbonate-carbon dioxide buffer. At low bicarbonate concentration the carnitine concentration can be rate-limiting. 3. All observations are in accordance with the view that the action of carnitine is in principle the same as that established for other fatty acids in other tissues, namely that carnitine promotes the appearance of propionyl-CoA within the mitochondrion by acting as a carrier. 4. The accelerating effects of carnitine and bicarbonate and the inhibitory effect of phosphate can be explained on the basis of the known properties of key enzymes of propionate metabolism, i.e. the reversibility of the reactions leading to the formation of methylmalonyl-CoA from propionyl-CoA. 5. 5mm-Propionate caused a five- to ten-fold fall in the free CoA content of the tissue. This fall can account for the inhibition of respiration and gluconeogenesis caused by high propionate concentration. 6. Relatively large quantities of propionyl-l-carnitine (15% of the propionate removed) were formed when dl-carnitine was present; thus the ;activation' of propionate proceeded at a faster rate than the carboxylation of propionyl-CoA. The metabolism of added propionyl-l-carnitine was accompanied by glucose synthesis. 7. The appearance of radioactivity from [2-(14)C]propionate in both glucose and carbon dioxide was as expected on account of the randomization of C-2 and C-3 of propionate, i.e. the formation of succinate as an intermediate. 8. The maximum rate of glucose synthesis from propionate (93.3+/-3.3mumoles/g. dry wt./hr.) was not affected by dietary changes aimed at varying the rate of caecal volatile fatty acid formation in the rat. 9. Inhibition of gluconeogenesis by high propionate concentration was not found in those species where the rate of caecal or ruminal propionate production is high under normal conditions (rabbit, sheep and cow).

MeSH Terms
Animals Bicarbonates/pharmacology Buffers Carbon Isotopes Carnitine/pharmacology Cattle Cecum/metabolism Coenzyme A/metabolism Depression, Chemical Gluconeogenesis/drug effects Glucose/biosynthesis Histological Techniques In Vitro Techniques Kidney/drug effects Male Malonates/biosynthesis Phosphates/pharmacology Propionates/metabolism Rabbits Rats Sheep Stimulation, Chemical Succinates/biosynthesis
Chemicals
Bicarbonates Buffers Carbon Isotopes Malonates Phosphates Propionates Succinates Glucose Carnitine Coenzyme A
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Weidemann M J
Krebs H A
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26 references, click to expand
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Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1969-01-00
Pages
69-81
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1187496
Subset
IM
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