Search bioRxiv⌕ Search

Biology subjects

Wickramasinghe, P.

Publications and source records attributed to Wickramasinghe, P..

2 recordsLinked to original sources

Brown adipocyte fatty acid synthase (FASN) deficiency protects mice from alcohol-induced elevations in plasma triglyceride and hepatic steatosis

Excessive alcohol intake is frequently associated with hypertriglyceridemia, a condition that increases the risk of severe complications including acute pancreatitis and cardiovascular disease. The very low-density lipoprotein (VLDL) receptor (VLDLR) promotes uptake of apoE-containing VLDL particles by peripheral tissues and plays an important role in maintaining plasma triglyceride (TG) homeostasis. Brown adipose tissue (BAT) is a major metabolic organ that contributes to circulating lipid clearance during thermogenic activation. It was reported that cold-induced thermogenesis upregulates VLDLR expression in BAT and reduces plasma TG via VLDL uptake. However, whether BAT VLDLR-mediated VLDL uptake regulates alcohol-induced hypertriglyceridemia remains unknown. Here, we generated BAT-specific fatty acid synthase (FASN) knockout mice (FASNBKO) and subjected them to binge and acute-on-chronic alcohol feeding paradigms. We found that BAT FASN deficiency enhanced thermogenic function and promoted VLDL uptake, resulting in attenuation of alcohol-induced elevations in plasma TG. Consistent with these findings, pharmacological inhibition of FASN by TVB3664 treatment in differentiated brown adipocytes (bADs) increased thermogenic gene expression and VLDL uptake under both control and alcohol-exposed conditions. In addition, FASNBKO mice were protected from alcohol-induced hepatic steatosis, which was accompanied by increased hepatic AMP-activated-protein kinase (AMPK) activation and enhanced {beta}-oxidation. Furthermore, FASNBKO mice exhibited upregulated FGF21 mRNA expression in the BAT and elevated circulating FGF21 levels. Similarly, TVB3664-treated differentiated bADs showed higher FGF21 expression and increased FGF21 content in culture medium. Taken together, these findings identify the important role of brown adipocyte FASN in regulating thermogenic function and TG homeostasis during alcohol exposure and suggest that enhancing thermogenic lipid utilization in BAT may represent a potential therapeutic strategy for mitigating alcohol-associated increases in plasma TG and hepatic fat accumulation.

pathology↗

Ablation of sympathetic nerve-β3 adrenergic receptor-mediated adipose tissue lipolysis attenuates alcohol-induced liver injury in mice

BACKGROUND & AIMSBinge drinking causes fat accumulation in the liver and is a known risk factor for more severe forms of alcohol-associated liver disease (ALD). Although adipocyte-released free fatty acids (FFA) have been shown to contribute to alcohol-induced liver damage, the signaling pathways that trigger lipolytic activity in adipose tissues following acute alcohol overconsumption is largely unknown. Notably, activation of sympathetic nerve-{beta}3 adrenergic receptor (ADRB3) plays a central role in sustained adipocyte lipolysis. However, whether this pathway is involved in acute alcohol-induced lipolysis remains unclear. We aimed to explore the effect of the sympathetic nerve-ADRB3-mediated pathway on adipocyte lipolytic action and fatty liver development following acute alcohol exposure. METHODSC57BL/6J mice were administered a single binge of alcohol to model acute alcohol exposure. 6-hydroxydopamine (6-OHDA) was injected systemically or locally to ablate sympathetic nerves. Mice lacking Adrb3 selectively in fat tissues (Adrb3FKO) were generated. White adipose tissue lipolysis, fatty liver development, and liver damage were investigated. RESULTSA single alcohol binge in C57BL/6J mice led to significant increases in white adipose tissue (WAT) norepinephrine (NE) content and plasma FFA levels, accompanied by the development of alcoholic hepatic steatosis. Acute alcohol-induced adipose tissue lipolysis and ALD were significantly mitigated by 6-OHDA-mediated systemic and fat tissue specific sympathetic nerve ablation. Deletion of Adrb3 in adipocytes protected mice from acute alcohol-induced adipose tissue lipolysis, hepatic fat accumulation, and liver injury. CONCLUSIONOur data indicate that binge drinking leads to the development of fatty liver and liver damage by activating adipose tissue sympathetic nerve-ADRB3-mediated lipolysis in mice. SUMMARYBinge drinking causes hepatic steatosis and liver injury through the activation of sympathetic nerve-{beta}3 adrenergic receptor-stimulated white adipose tissue lipolysis and release of free fatty acids. O_FIG O_LINKSMALLFIG WIDTH=194 HEIGHT=200 SRC="FIGDIR/small/627372v1_ufig1.gif" ALT="Figure 1"> View larger version (46K): org.highwire.dtl.DTLVardef@12ec139org.highwire.dtl.DTLVardef@8fa283org.highwire.dtl.DTLVardef@1f65d50org.highwire.dtl.DTLVardef@168344c_HPS_FORMAT_FIGEXP M_FIG C_FIG

physiology↗