Central hormone-sensitive lipase is located at synapses and is necessary for normal memory performance in mice
Skoug, C.; Holm, C.; Duarte, J. M. N.
Show abstract
Hormone-sensitive lipase (HSL) is mainly present in the adipose tissue where it hydrolyses diacylglycerol. Although brain expression of HSL has been reported, its presence in different cellular compartments is uncertain, and its role in regulating brain lipid metabolism remains hitherto unexplored. We propose that HSL has a role in regulating the availability of bioactive lipids necessary for adequate neuronal function. Therefore, we tested the hypothesis that dampening HSL activity leads to brain dysfunction. We found HSL protein and activity throughout all the mouse brain, localised in neurons and especially enriched in synapses. HSL null mice were then analysed using a battery of behavioural tests. Relative to wild-type littermates, HSL null mice showed impaired short- and long-term memory, but preserved exploratory behaviours. Molecular analysis of the cortex and hippocampus showed increased expression of genes involved in glucose utilization in the hippocampus but not cortex of HSL null mice compared to controls. Lipidomics analyses indicated an impact of HSL deletion on the profile of bioactive lipids, including endocannabinoids and eicosanoids that are known to modulate neuronal activity, cerebral blood blow and inflammation processes. Accordingly, mild increases in expression of pro-inflammatory cytokines suggest low grade inflammation in HSL null mice compared to littermates. We conclude that HSL has a homeostatic role in maintaining pools of lipids that are needed for brain function. It remains to be tested, however, whether the recruitment of HSL for the synthesis of these lipids occurs during increased neuronal activity, or whether HSL participates in neuroinflammatory responses.
Matching journals
The top 13 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- SynGAP Splice Variants Display Heterogeneous Spatio-Temporal Expression And Subcellular Distribution In The Developing Mammalian Brain 94%
- Suppression of amyloid-β secretion from neurons by cis-9, trans-11-octadecadienoic acid, an isomer of conjugated linoleic acid 94%
- Gas5 regulates early life stress-induced anxiety and spatial memory 93%
Similar papers in this journal
- FINCA disease mouse model exhibits altered behaviour and immune response 95%
- Early-life obesogenic environment integrates immunometabolic and epigenetic signatures governing neuroinflammation 94%
- Perinatal IL-1-induced Inflammation Suppresses Tbr2+ Intermediate Progenitor Cell Proliferation in the Developing Hippocampus accompanied by Long-Term Behavioral Deficits 94%
Similar papers in this journal
- Ferredoxin 1 is essential for embryonic development and lipid homeostasis 94%
- Cold induces brain region-selective cell activity-dependent lipid metabolism 94%
- Constitutive AP2gamma deficiency reduces postnatal hippocampal neurogenesis and induces behavioral deficits in juvenile mice that persist during adulthood 94%
Similar papers in this journal
- Increased levels of circulating methylglyoxal have no consequence for cerebral microvascular integrity and cognitive function in young healthy mice 94%
- MicroRNA-210 Knockout Alters Dendritic Density and Behavioural Flexibility 93%
- High-fat diet feeding triggers a regenerative response in the adult zebrafish brain 93%
Similar papers in this journal
- A missense mutation in zinc finger homeobox-3 (ZFHX3) impedes growth and alters metabolism and hypothalamic gene expression in mice. 93%
- Hydrogen sulfide protects erectile function through stimulation of antioxidant defense in the corpus cavernosum 93%
- Muscle-derived miR-200a-3p through light-intensity exercise may contribute to improve memory dysfunction in type 2 diabetic mice 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.