Abstract
In order to study the quantitative relationship between fatty acid synthesis and pentose phosphate-cycle activity under different hormonal and dietary conditions affecting the extent of glucose uptake, cells isolated from rat epididymal adipose tissue were incubated in bicarbonate buffer containing [U-(14)C]-, [1-(14)C]- or [6-(14)C]-glucose. From the amount of glucose taken up, the production of lactate and pyruvate, and the incorporation of (14)C from differently labelled [(14)C]glucose into CO(2), fatty acids and glyceride glycerol, the rates of glucose metabolism via different pathways and the extent of lipogenesis under various experimental conditions were determined. The contribution of the pentose phosphate-cycle to glucose metabolism under normal conditions was calculated to be 8%. Starvation and re-feeding, and the presence of insulin, caused an enhancement of glucose uptake, pentose phosphate-cycle activity and fatty acid synthesis. Plots of both pentose phosphate-cycle activity and fatty acid synthesis versus glucose uptake revealed that the extent of glucose uptake, over a wide range, determines the rates of fatty acid synthesis and glucose metabolism via the pentose phosphate cycle. A balance of formation and production of nicotinamide nucleotides in the cytoplasm was established. The total amount of cytoplasmic NADH and NADPH formed was only in slight excess over the hydrogen equivalents required for the synthesis of fatty acids, glyceride glycerol and lactate. Except in cells from starved animals, the pentose phosphate cycle was found to provide only about 60% of the NADPH required for fatty acid synthesis. The results are discussed with respect to an overall control of the different metabolic and biosynthetic reactions in the fat-cells by the amount of glucose transported into the cell.
MeSH Terms
Adipose Tissue/metabolism
Animals
Biological Clocks
Carbon Dioxide/metabolism
Carbon Isotopes
Fatty Acids/biosynthesis
Glucose/metabolism
Glycerides/metabolism
In Vitro Techniques
Insulin/pharmacology
Lactates/biosynthesis
Lipids/biosynthesis
Male
NAD
NADP
Pentosephosphates/metabolism
Pyruvates/biosynthesis
Rats
Starvation/metabolism
Chemicals
Carbon Isotopes
Fatty Acids
Glycerides
Insulin
Lactates
Lipids
Pentosephosphates
Pyruvates
NAD
Carbon Dioxide
NADP
Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kather H
Rivera M
Brand K
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