Literature DB >> 23692447

The pre-synaptic Munc13-1 binds alcohol and modulates alcohol self-administration in Drosophila.

Joydip Das1, Shiyu Xu, Satyabrata Pany, Ashley Guillory, Vrutant Shah, Gregg W Roman.   

Abstract

Munc13-1 is a pre-synaptic active-zone protein essential for neurotransmitter release and involved in pre-synaptic plasticity in brain. Ethanol, butanol, and octanol quenched the intrinsic fluorescence of the C1 domain of Munc13-1 with EC₅₀ s of 52 mM, 26 mM, and 0.7 mM, respectively. Photoactive azialcohols photolabeled Munc13-1 C1 exclusively at Glu-582, which was identified by mass spectrometry. Mutation of Glu-582 to alanine, leucine, and histidine reduced the alcohol binding two- to five-fold. Circular dichroism studies suggested that binding of alcohol increased the stability of the wild-type Munc13-1 compared with the mutants. If Munc13-1 plays some role in the neural effects of alcohol in vivo, changes in the activity of this protein should produce differences in the behavioral responses to ethanol. We tested this prediction with a loss-of-function mutation in the conserved Dunc-13 in Drosophila melanogaster. The Dunc-13(P84200) /+ heterozygotes have 50% wild-type levels of Dunc-13 mRNA and display a very robust increase in ethanol self-administration. This phenotype is reversed by the expression of the rat Munc13-1 protein within the Drosophila nervous system. The present studies indicate that Munc13-1 C1 has binding site(s) for alcohols and Munc13-1 activity is sufficient to restore normal self-administration to Drosophila mutants deficient in Dunc-13 activity. The pre-synaptic Mun13-1 protein is a critical regulator of synaptic vesicle fusion and may be involved in processes that lead to ethanol abuse and addiction. We studied its interaction with alcohol and identified Glu-582 as a critical residue for ethanol binding. Munc13-1 can functionally complement the Dunc13 haploinsufficient ethanol self-administration phenotype in Drosophila melanogaster, indicating that this protein participates in alcohol-induced behavioral plasticity.
© 2013 International Society for Neurochemistry.

Entities:  

Keywords:  Drosophila; alcohol; mass spectrometry; pre-synaptic; protein kinase C

Mesh:

Substances:

Year:  2013        PMID: 23692447      PMCID: PMC3766433          DOI: 10.1111/jnc.12315

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  44 in total

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  23 in total

1.  Resveratrol inhibits phorbol ester-induced membrane translocation of presynaptic Munc13-1.

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Review 2.  Drosophila and Caenorhabditis elegans as Discovery Platforms for Genes Involved in Human Alcohol Use Disorder.

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4.  Effect of ethanol on Munc13-1 C1 in Membrane: A Molecular Dynamics Simulation Study.

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5.  Sir2/Sirt1 Links Acute Inebriation to Presynaptic Changes and the Development of Alcohol Tolerance, Preference, and Reward.

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Review 6.  SNARE Complex-Associated Proteins and Alcohol.

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Review 7.  Genetics and genomics of alcohol responses in Drosophila.

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8.  Alcohol binding in the C1 (C1A+C1B) domain of protein kinase C epsilon.

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9.  Identification of alcohol-binding site(s) in proteins using diazirine-based photoaffinity labeling and mass spectrometry.

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