INVESTIGADORES
ROTSTEIN Nora Patricia
artículos
Título:
Lipid metabolism in electroplax
Autor/es:
ROTSTEIN, N.P.; ARIAS, H.R.; AVELDAÑO, M.I.; BARRANTES, F.J.
Revista:
JOURNAL OF NEUROCHEMISTRY
Editorial:
WILEY-BLACKWELL PUBLISHING, INC
Referencias:
Año: 1987 vol. 49 p. 1341 - 1347
ISSN:
0022-3042
Resumen:
The in vivo labeling of electrocyte lipids is followed after injection of radioactive glycerol and two fatty acids, oleate and arachidonate, into the electric organ of an elasmobranch (Discopyge tschudii). De novo synthesis of lipids and acyl-exchange reactions are operative in the electrocyte. The three precursors are preferentially incorporated into phosphatidylcholine, phosphatidylinositol, and triacylglycerols. The highest specific activities are attained by triacylglycerols and polyphosphoinositides. Electrocyte stacks from electric organ show an efficient and continuousesterification of oleate and arachidonate into lipids after several hours of incubation. Except for an apparently more active labeling of triacylglycerols, which is attributed to the larger availability of free fatty acid precursors under the in vitro experimental conditions, the pattern of lipid labelingis similar to that attained in vivo. 32P-labeled lipids are also steadily produced in electrocyte stacks (24 h of incubation with [32P]phosphate) using glucose as the sole exogenoussource of energy. Polyphosphoinositides are the lipids preferentially labeled. The ability to sustain the labeling of lipids under in vitro conditions renders isolated electrocyte stacks an interesting model for future research on lipid involvement in cholinergic function.