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MUNC 13-1 HETEROZYGOSITY DOES NOT ALTER VOLUNTARY ETHANOL CONSUMPTION OR SENSITIVITY IN MICE
The role of the munc 13-1 pre-synaptic protein in alcohol-related behaviors has been little-studied, despite being a known site of action for ethanol binding. Munc 13-1 is an active zone protein that plays a vital role in vesicle maturation and the release of neurotransmitter in excitatory neurons....
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Published in: | Alcohol (Fayetteville, N.Y.) N.Y.), 2019-06, Vol.83, p.89-97 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Online Access: | Get full text |
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Summary: | The role of the munc 13-1 pre-synaptic protein in alcohol-related behaviors has been little-studied, despite being a known site of action for ethanol binding. Munc 13-1 is an active zone protein that plays a vital role in vesicle maturation and the release of neurotransmitter in excitatory neurons. Ethanol binds munc 13-1, decreasing its functionality. In
Drosophila
, loss of the homologous protein Dunc13 is associated with an increase in ethanol preference, and a resistance to sedation following ethanol exposure. The current study assessed the effects of munc 13-1 heterozygosity on ethanol sensitivity and consumption in mice, as well as on learning and anxiety-like behaviors, which can influence alcohol intake. Wild type and mutant mice underwent 6 cycles of drinking-in-the-dark (DID) as well as rotarod testing following ethanol injection, to probe for differences in ethanol consumption and sensitivity, respectively. We did not detect genotype-based differences in our measures of anxiety, spatial learning, ethanol consumption, or ethanol sensitivity. However, heterozygotes showed increased use of a spatial navigation strategy in a dual solution water maze, as opposed to a stimulus-response strategy. To summarize, although reduction of Dunc13 in flies produces clear effects on ethanol consumption and sensitivity, heterozygosity for munc 13-1 does not, potentially due to compensatory adaptation by other munc 13 isoforms. |
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ISSN: | 0741-8329 1873-6823 |
DOI: | 10.1016/j.alcohol.2019.06.007 |