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Reduction in adipocyte ATP by lipolytic agents: relation to intracellular free fatty acid accumulation
Abstract:
Epinephrine, norepinephrine, ACTH, and dibutyryl 3',5'-cyclic AMP reduced adipocyte ATP levels during 60 min incubation; glucose displayed a protective effect. The reduction in adipocyte ATP levels could not be attributed solely to: a direct hormone effect, deficiency in metabolic substrate, activation of adenyl cyclase with ATP consumption, loss of adenine nucleotide from the cell or loss of cells during incubation, lipolytic rate per se, or extracellular accumulation of FFA or glycerol. To determine whether intracellular FFA accumulation was a causative factor, intracellular FFA levels were measured during hormone-stimulated lipolysis. This was accomplished by using sucrose-U-(14)C as a marker for the extracellular space to correct for contamination of cells by extracellular albumin-bound FFA. These experiments showed that the fall in adipocyte ATP correlated with FFA saturation of medium albumin and progressive accumulation of FFA within the adipocyte. Furthermore, the protective effect of glucose noted above was associated with a marked reduction in intracellular FFA as compared to the extracellular FFA pool. On the basis of these studies, combined with those in the literature, it is concluded that in vitro effects of lipolytic agents on adipocyte ATP levels are the net result of imparied ATP synthesis (uncoupled oxidative phosphorylation) in the face of normal or augmented ATP consumption.
Insights
Lipolytic agents decrease adipocyte ATP levels by impairing ATP synthesis, not just consumption. Glucose protects cells by reducing intracellular fatty acid accumulation.
Area of Science:
- Biochemistry
- Cell Biology
- Metabolic Research
Background:
- Adipocyte ATP levels are crucial for cellular function.
- Lipolytic agents are known to affect cellular energy metabolism.
Purpose of the Study:
- To investigate the mechanisms behind reduced adipocyte ATP levels induced by lipolytic agents.
- To determine the role of intracellular fatty acid accumulation in this process.
Main Methods:
- Measurement of adipocyte ATP levels after incubation with lipolytic agents (epinephrine, norepinephrine, ACTH, dibutyryl cyclic AMP).
- Quantification of intracellular and extracellular free fatty acids (FFA) using sucrose-U-(14)C as an extracellular marker.
- Assessment of glucose's protective effect on ATP levels.
Main Results:
- Lipolytic agents significantly reduced adipocyte ATP levels within 60 minutes.
- The ATP reduction correlated with intracellular FFA accumulation and FFA saturation of albumin in the incubation medium.
- Glucose demonstrated a protective effect, associated with reduced intracellular FFA.
Conclusions:
- The fall in adipocyte ATP levels is primarily due to impaired ATP synthesis (uncoupled oxidative phosphorylation).
- Intracellular FFA accumulation, rather than lipolysis rate or extracellular factors, is a key causative factor.
- Glucose mitigates ATP depletion by reducing intracellular FFA buildup.