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Mice lacking α4 nicotinic acetylcholine receptors are protected against alcohol-associated liver injury
Walter H Watson1,2, Jeffrey D Ritzenthaler3, Edilson Torres-Gonzalez3
1Division of Gastroenterology, Hepatology and Nutrition, Department of Medicine, University of Louisville, Louisville, Kentucky, USA.
Background:
Chronic heavy alcohol consumption is a major risk factor for the development of liver steatosis, fibrosis, and cirrhosis, but the mechanisms by which alcohol causes liver damage remain incompletely elucidated. This group has reported that α4 nicotinic acetylcholine receptors (α4 nAChRs) act as sensors for alcohol in lung cells. This study tested the hypothesis that α4 nAChRs mediate the effects of alcohol in the liver.
Methods:
Expression of acetylcholine receptor subunits in mouse liver was determined by RNA sequencing (RNA-seq). α4 nAChR knockout (α4 KO) mice were generated in C57BL/6J mice by introducing a mutation encoding an early stop codon in exon 4 of Chrna4, the gene encoding the α4 subunit of the nAChR. The presence of the inactivating mutation was established by polymerase chain reaction and genomic sequencing, and the lack of α4 nAChR function was confirmed in primary fibroblasts isolated from the α4 KO mice. Wild-type (WT) and α4 KO mice were fed the Lieber-DeCarli diet (with 36% of calories from alcohol) or pair fed an isocaloric maltose-dextrin control diet for a 6-week period that included a ramping up phase of increasing dietary alcohol.
Results:
Chrna4 was the most abundantly expressed nAChR subunit gene in mouse livers. After 6 weeks of alcohol exposure, WT mice had elevated serum transaminases and their livers showed increased fat accumulation, decreased Sirt1 protein levels, and accumulation of markers of oxidative stress and inflammation including Cyp2E1, Nos2, Sod1, Slc7a11, TNFα, and PAI1. All these responses to alcohol were either absent or significantly attenuated in α4 KO animals.
Conclusion:
Together, these observations support the conclusion that activation of α4 nAChRs by alcohol or one of its metabolites is one of the initial events promoting the accumulation of excess fat and expression of inflammatory mediators. Thus, α4 nAChRs may represent viable targets for intervention in chronic alcohol-related liver disease.
Insights
Alpha4 nicotinic acetylcholine receptors (α4 nAChRs) sense alcohol in the liver, mediating alcohol-induced liver damage. Blocking these receptors may offer a new treatment for alcohol-related liver disease.
Area of Science:
- Hepatology
- Pharmacology
- Molecular Biology
Background:
- Chronic alcohol consumption is a leading cause of liver disease, including steatosis, fibrosis, and cirrhosis.
- The precise mechanisms underlying alcohol-induced liver injury are not fully understood.
- Alpha4 nicotinic acetylcholine receptors (α4 nAChRs) have been identified as alcohol sensors in lung cells.
Purpose of the Study:
- To investigate the role of α4 nAChRs in mediating alcohol's effects on the liver.
- To test the hypothesis that α4 nAChRs are involved in alcohol-induced liver damage.
Main Methods:
- Determined expression of acetylcholine receptor subunits in mouse liver via RNA sequencing.
- Generated α4 nAChR knockout (α4 KO) mice by introducing a stop codon mutation in the Chrna4 gene.
- Administered a chronic alcohol-containing diet to wild-type (WT) and α4 KO mice for six weeks.
Main Results:
- Chrna4 was the most highly expressed nAChR subunit gene in mouse livers.
- WT mice exposed to alcohol exhibited elevated transaminases, increased liver fat, decreased Sirt1, and markers of oxidative stress and inflammation.
- These alcohol-induced changes were significantly reduced or absent in α4 KO mice.
Conclusions:
- Activation of α4 nAChRs by alcohol or its metabolites initiates fat accumulation and inflammation in the liver.
- α4 nAChRs represent a potential therapeutic target for mitigating chronic alcohol-related liver disease.
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