Ketchesin Kyle D, Becker-Krail Darius D, Xue Xiangning, Wilson Rashaun S, Lam TuKiet T, Williams Kenneth R, Nairn Angus C, Tseng George C, Logan Ryan W
bioRxiv. 2023 Mar 2:2023.03.01.530696. doi: 10.1101/2023.03.01.530696.
Substance use disorders (SUDs) are associated with disruptions in sleep and circadian rhythms that persist during abstinence and may contribute to relapse risk. Repeated use of substances such as psychostimulants and opioids may lead to significant alterations in molecular rhythms in the nucleus accumbens (NAc), a brain region central to reward and motivation. Previous studies have identified rhythm alterations in the transcriptome of the NAc and other brain regions following the administration of psychostimulants or opioids. However, little is known about the impact of substance use on the diurnal rhythms of the proteome in the NAc. We used liquid chromatography coupled to tandem mass spectrometry-based (LC-MS/MS) quantitative proteomics, along with a data-independent acquisition (DIA) analysis pipeline, to investigate the effects of cocaine or morphine administration on diurnal rhythms of proteome in the mouse NAc. Overall, our data reveals cocaine and morphine differentially alters diurnal rhythms of the proteome in the NAc, with largely independent differentially expressed proteins dependent on time-of-day. Pathways enriched from cocaine altered protein rhythms were primarily associated with glucocorticoid signaling and metabolism, whereas morphine was associated with neuroinflammation. Collectively, these findings are the first to characterize the diurnal regulation of the NAc proteome and demonstrate a novel relationship between phase-dependent regulation of protein expression and the differential effects of cocaine and morphine on the NAc proteome.
物质使用障碍(SUDs)与睡眠和昼夜节律紊乱有关,这些紊乱在戒断期间持续存在,并可能导致复发风险。反复使用精神兴奋剂和阿片类药物等物质可能会导致伏隔核(NAc)分子节律的显著改变,伏隔核是大脑中与奖赏和动机相关的核心区域。先前的研究已经确定,在使用精神兴奋剂或阿片类药物后,NAc和其他脑区的转录组会出现节律改变。然而,关于物质使用对NAc蛋白质组昼夜节律的影响知之甚少。我们使用液相色谱-串联质谱(LC-MS/MS)定量蛋白质组学,以及数据非依赖采集(DIA)分析流程,来研究给予可卡因或吗啡对小鼠NAc蛋白质组昼夜节律的影响。总体而言,我们的数据表明,可卡因和吗啡对NAc蛋白质组的昼夜节律有不同的影响,在很大程度上,差异表达的蛋白质独立于一天中的时间。可卡因改变的蛋白质节律所富集的通路主要与糖皮质激素信号传导和代谢有关,而吗啡则与神经炎症有关。总的来说,这些发现首次描述了NAc蛋白质组的昼夜调节,并证明了蛋白质表达的相位依赖性调节与可卡因和吗啡对NAc蛋白质组的不同影响之间的新关系。