生物
肠道菌群
伏隔核
蛋白质细菌
柠檬酸杆菌
微生物学
谷氨酸的
殖民地化
肠-脑轴
神经科学
受体
多巴胺
谷氨酸受体
生物化学
免疫学
细菌
遗传学
16S核糖体RNA
病菌
作者
Santiago Cuesta,Paula Burdisso,Amir Segev,Saı̈d Kourrich,Vanessa Sperandio
标识
DOI:10.1016/j.chom.2022.09.014
摘要
Summary
Gut-microbiota membership is associated with diverse neuropsychological outcomes, including substance use disorders (SUDs). Here, we use mice colonized with Citrobacter rodentium or the human γ-Proteobacteria commensal Escherichia coli HS as a model to examine the mechanistic interactions between gut microbes and host responses to cocaine. We find that cocaine exposure increases intestinal norepinephrine levels that are sensed through the bacterial adrenergic receptor QseC to promote intestinal colonization of γ-Proteobacteria. Colonized mice show enhanced host cocaine-induced behaviors. The neuroactive metabolite glycine, a bacterial nitrogen source, is depleted in the gut and cerebrospinal fluid of colonized mice. Systemic glycine repletion reversed, and γ-Proteobacteria mutated for glycine uptake did not alter the host response to cocaine. γ-Proteobacteria modulated glycine levels are linked to cocaine-induced transcriptional plasticity in the nucleus accumbens through glutamatergic transmission. The mechanism outline here could potentially be exploited to modulate reward-related brain circuits that contribute to SUDs.
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