Publisher: John Wiley & Sons Inc
E-ISSN: 2211-5463|2|1|32-36
ISSN: 2211-5463
Source: FEBS Open Bio, Vol.2, Iss.1, 2012-01, pp. : 32-36
Disclaimer: Any content in publications that violate the sovereignty, the constitution or regulations of the PRC is not accepted or approved by CNPIEC.
Abstract
We studied adipocytes from 8‐week‐old control rat offspring (CON) or rat offspring subjected to maternal low (8%) protein (MLP) feeding during pregnancy/lactation, a procedure predisposing to obesity. Acute exposure to isoproterenol or adenosine enhanced PDK4 and PPARγ mRNA gene expression in CON and MLP adipocytes. Enhanced adipocyte Pdk4 expression correlated with increased PPARγ expression. Higher levels of PDK4 and PPARγ were observed in MLP adipocytes. SCD1 is a PPARγ target. Isoproterenol enhanced adipocyte PDK4 and SCD1 gene expression in parallel. This could reflect augmented PPARγ expression together with enhanced lipolytic stimulation to supply endogenous PPARγ ligands, allowing enhanced adipocyte PDK4 and SCD1 expression via PPARγ activation. In contrast, the effect of adenosine to increase PDK4 expression is independent of stimulation of lipolysis and, as SCD1 expression was unaffected by adenosine, unlikely to reflect PPARγ activation. Increased adipocyte expression of both PDK4 and SCD1 in the MLP model could participate as components of a “thrifty” phenotype, favouring the development of obesity.▸ An early‐life dietary intervention increasing the risk of obesity enhances adipocyte Pdk4 expression. ▸ Adenosine increases adipocyte PDK4 expression. ▸ An early‐life dietary intervention augments PPARγ expression and enhances lipolytic stimulation. ▸ Enhanced lipolysis could supply PPARγ ligands enhancing adipocyte PDK4 via PPARγ activation.
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