Key result
Excess cellular lipids impaired cardiomyocyte beta-adrenergic receptor responsiveness and reduced beta-AR density via PKC activation.
Why the study?
Does excess cellular lipid accumulation impair cardiomyocyte responsiveness to adrenergic stimuli via PKC activation?
Does excess cellular lipid accumulation impair cardiomyocyte responsiveness to adrenergic stimuli via PKC activation?
Lipotoxicity impairs β-adrenergic receptor responsiveness in cardiomyocytes through PKC activation, providing a potential mechanism for cardiac dysfunction in metabolic diseases.
Should not yet change clinical practice in metabolic cardiomyopathy; hypothesis-generating for PKC as a lipotoxicity target in humans.
Normal hearts have increased contractility in response to catecholamines. Because several lipids activate PKCs, we hypothesized that excess cellular lipids would inhibit cardiomyocyte responsiveness to adrenergic stimuli. Cardiomyocytes treated with saturated free fatty acids, ceramide, and diacylglycerol had reduced cellular cAMP response to isoproterenol. This was associated with increased PKC activation and reduction of β-adrenergic receptor (β-AR) density. Pharmacological and genetic PKC inhibition prevented both palmitate-induced β-AR insensitivity and the accompanying reduction in cell surface β-ARs. Mice with excess lipid uptake due to either cardiac-specific overexpression of anchored lipoprotein lipase, PPARγ, or acyl-CoA synthetase-1 or high-fat diet showed reduced inotropic responsiveness to dobutamine. This was associated with activation of protein kinase C (PKC)α or PKCδ. Thus, several lipids that are increased in the setting of lipotoxicity can produce abnormalities in β-AR responsiveness. This can be attributed to PKC activation and reduced β-AR levels.
No takes yet. Share an insight, caveat, or question.
Drosatos et al. (2010) studied Lipotoxicity and beta-adrenergic receptor responsiveness. Excess cellular lipids (fatty acids, ceramide, diacylglycerol, high-fat diet, genetic models) vs. Normal lipid conditions or PKC inhibition was evaluated on Cellular cAMP response to isoproterenol and inotropic responsiveness to dobutamine. Excess cellular lipids impaired cardiomyocyte beta-adrenergic receptor responsiveness and reduced beta-AR density via PKC activation.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: