Proteomic Analysis Unveils Expressional Changes in Cytoskeleton- and Synaptic Plasticity-Associated Proteins in Rat Brain Six Months after Withdrawal from Morphine

被引:14
作者
Drastichova, Zdenka [1 ]
Hejnova, Lucie [1 ]
Moravcova, Radka [1 ]
Novotny, Jiri [1 ]
机构
[1] Charles Univ Prague, Fac Sci, Dept Physiol, Prague 12800, Czech Republic
来源
LIFE-BASEL | 2021年 / 11卷 / 07期
关键词
morphine; withdrawal; brain; proteomics; synaptic plasticity; POSTSYNAPTIC DENSITY PROTEINS; RECEPTOR MESSENGER-RNA; OPIOID-RECEPTOR; KINASE-II; PROTRACTED ABSTINENCE; PHOSPHORYLATION SITES; MICROTUBULE DYNAMICS; NUCLEUS-ACCUMBENS; GENE-EXPRESSION; DISEASE-MODEL;
D O I
10.3390/life11070683
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Drug withdrawal is associated with abstinence symptoms including deficits in cognitive functions that may persist even after prolonged discontinuation of drug intake. Cognitive deficits are, at least partially, caused by alterations in synaptic plasticity but the precise molecular mechanisms have not yet been fully identified. In the present study, changes in proteomic and phosphoproteomic profiles of selected brain regions (cortex, hippocampus, striatum, and cerebellum) from rats abstaining for six months after cessation of chronic treatment with morphine were determined by label-free quantitative (LFQ) proteomic analysis. Interestingly, prolonged morphine withdrawal was found to be associated especially with alterations in protein phosphorylation and to a lesser extent in protein expression. Gene ontology (GO) term analysis revealed enrichment in biological processes related to synaptic plasticity, cytoskeleton organization, and GTPase activity. More specifically, significant changes were observed in proteins localized in synaptic vesicles (e.g., synapsin-1, SV2a, Rab3a), in the active zone of the presynaptic nerve terminal (e.g., Bassoon, Piccolo, Rims1), and in the postsynaptic density (e.g., cadherin 13, catenins, Arhgap35, Shank3, Arhgef7). Other differentially phosphorylated proteins were associated with microtubule dynamics (microtubule-associated proteins, Tppp, collapsin response mediator proteins) and the actin-spectrin network (e.g., spectrins, adducins, band 4.1-like protein 1). Taken together, a six-month morphine withdrawal was manifested by significant alterations in the phosphorylation of synaptic proteins. The altered phosphorylation patterns modulating the function of synaptic proteins may contribute to long-term neuroadaptations induced by drug use and withdrawal.
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页数:32
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