A multi-omic analysis of the dorsal striatum in an animal model of divergent genetic risk for alcohol use disorder

被引:10
|
作者
Grecco, Gregory G. [1 ,2 ]
Haggerty, David L. [1 ]
Doud, Emma H. [3 ]
Fritz, Brandon M. [1 ]
Yin, Fuqin [1 ]
Hoffman, Hunter [1 ]
Mosley, Amber L. [3 ]
Simpson, Edward [4 ]
Liu, Yunlong [4 ]
Baucum, Anthony J., II [1 ,5 ,6 ]
Atwood, Brady K. [1 ,6 ]
机构
[1] Indiana Univ Sch Med, Dept Pharmacol & Toxicol, Indianapolis, IN 46202 USA
[2] Indiana Univ Sch Med, Med Scientist Training Program, Indianapolis, IN 46202 USA
[3] Indiana Univ Sch Med, Dept Biochem & Mol Biol, Indianapolis, IN 46202 USA
[4] Indiana Univ Sch Med, Dept Med & Mol Genet, Indianapolis, IN 46202 USA
[5] Indiana Univ Purdue Univ, Dept Biol, Indianapolis, IN 46205 USA
[6] Indiana Univ Sch Med, Stark Neurosci Res Inst, Indianapolis, IN 46202 USA
关键词
Alcohol; AUD; Dorsal Striatum; Phosphoproteomics; Proteomics; RNA-sequencing; NF-KAPPA-B; NEUROFILAMENT PROTEINS; PREFERRING MICE; BASAL GANGLIA; TIME-COURSE; ETHANOL; PREFERENCE; EXPRESSION; TRANSCRIPTOME; IDENTIFICATION;
D O I
10.1111/jnc.15226
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The development of selectively bred high and low alcohol-preferring mice (HAP and LAP, respectively) has allowed for an assessment of the polygenetic risk for pathological alcohol consumption and phenotypes associated with alcohol use disorder (AUD). Accumulating evidence indicates that the dorsal striatum (DS) is a central node in the neurocircuitry underlying addictive processes. Therefore, knowledge of differential gene, protein, and phosphorylated protein expression in the DS of HAP and LAP mice may foster new insights into how aberrant DS functioning may contribute to AUD-related phenotypes. To begin to elucidate these basal differences, a complementary and integrated analysis of DS tissue from alcohol-naive male and female HAP and LAP mice was performed using RNA sequencing, quantitative proteomics, and phosphoproteomics. These datasets were subjected to a thorough analysis of gene ontology, pathway enrichment, and hub gene assessment. Analyses identified 2,108, 390, and 521 significant differentially expressed genes, proteins, and phosphopeptides, respectively between the two lines. Network analyses revealed an enrichment in the differential expression of genes, proteins, and phosphorylated proteins connected to cellular organization, cytoskeletal protein binding, and pathways involved in synaptic transmission and functioning. These findings suggest that the selective breeding to generate HAP and LAP mice may lead to a rearrangement of synaptic architecture which could alter DS neurotransmission and plasticity differentially between mouse lines. These rich datasets will serve as an excellent resource to inform future studies on how inherited differences in gene, protein, and phosphorylated protein expression contribute to AUD-related phenotypes.
引用
收藏
页码:1013 / 1031
页数:19
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