Subbanna_2015_J.Neurochem_134_276

Reference

Title : Postnatal ethanol exposure alters levels of 2-arachidonylglycerol-metabolizing enzymes and pharmacological inhibition of monoacylglycerol lipase does not cause neurodegeneration in neonatal mice - Subbanna_2015_J.Neurochem_134_276
Author(s) : Subbanna S , Psychoyos D , Xie S , Basavarajappa BS
Ref : Journal of Neurochemistry , 134 :276 , 2015
Abstract :

The consumption of ethanol by pregnant women may cause neurological abnormalities, affecting learning and memory processes in children, and are collectively described as fetal alcohol spectrum disorders. However, the molecular mechanisms underlying these changes are still poorly understood. In our previous studies, we found that ethanol treatment of postnatal day 7 (P7) mice significantly enhances the anandamide levels but not the 2-arachidonylglycerol (2-AG) levels and induces widespread neurodegeneration, but the reason for the lack of significant effects of ethanol on the 2-AG level is unknown. In this study, we examined developmental changes in diacylglycerol lipase-alpha, beta (DAGL-alpha and beta) and monoacylglycerol lipase (MAGL). We found that the levels of these proteins were significantly higher in adult brains compared to those detected early in brain development. Next, we examined the influence of P7 ethanol treatment on these enzymes, finding that it differentially altered the DAGL-alpha protein and mRNA levels but consistently enhanced those of the DAGL-beta. Interestingly, the ethanol treatment enhanced MAGL protein and mRNA levels. Inhibition of MAGL with KML29 failed to induce neurodegeneration in P7 mice. Collectively, these findings suggest that ethanol significantly activates DAGL-beta and MAGL in the neonatal brain, resulting in no net change in 2-AG levels.

PubMedSearch : Subbanna_2015_J.Neurochem_134_276
PubMedID: 25857698

Related information

Inhibitor KML29

Citations formats

Subbanna S, Psychoyos D, Xie S, Basavarajappa BS (2015)
Postnatal ethanol exposure alters levels of 2-arachidonylglycerol-metabolizing enzymes and pharmacological inhibition of monoacylglycerol lipase does not cause neurodegeneration in neonatal mice
Journal of Neurochemistry 134 :276

Subbanna S, Psychoyos D, Xie S, Basavarajappa BS (2015)
Journal of Neurochemistry 134 :276