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震颤效应与 lolitrem B 及其生物合成中间产物的功能代谢组学分析。

Tremorgenic effects and functional metabolomics analysis of lolitrem B and its biosynthetic intermediates.

机构信息

Agriculture Victoria, AgriBio, Centre for AgriBioscience, Bundoora, Victoria, 3083, Australia.

School of Applied Systems Biology, La Trobe University, Bundoora, Victoria, 3083, Australia.

出版信息

Sci Rep. 2019 Jun 27;9(1):9364. doi: 10.1038/s41598-019-45170-7.

Abstract

The neuroactive mycotoxin lolitrem B causes a neurological syndrome in grazing livestock resulting in hyperexcitability, muscle tremors, ataxia and, in severe cases, clonic seizures and death. To define the effects of the major toxin lolitrem B in the brain, a functional metabolomic study was undertaken in which motor coordination and tremor were quantified and metabolomic profiling undertaken to determine relative abundance of both toxin and key neurotransmitters in various brain regions in male mice. Marked differences were observed in the duration of tremor and coordination between lolitrem B pathway members, with some showing protracted effects and others none at all. Lolitrem B was identified in liver, kidney, cerebral cortex and thalamus but not in brainstem or cerebellum which were hypothesised previously to be the primary site of action. Metabolomic profiling showed significant variation in specific neurotransmitter and amino acid profiles over time. This study demonstrates accumulation of lolitrem B in the brain, with non-detectable levels of toxin in the brainstem and cerebellum, inducing alterations in metabolites such as tyrosine, suggesting a dynamic catecholaminergic response over time. Temporal characterisation of key pathways in the pathophysiological response of lolitrem B in the brain were also identified.

摘要

神经活性霉菌毒素洛替雷素 B 会导致放牧牲畜出现神经系统综合征,导致过度兴奋、肌肉震颤、共济失调,严重情况下还会出现阵挛性癫痫发作和死亡。为了确定主要毒素洛替雷素 B 在大脑中的作用,进行了一项功能性代谢组学研究,其中对运动协调和震颤进行了量化,并进行代谢组学分析以确定雄性小鼠不同脑区的毒素和关键神经递质的相对丰度。洛替雷素 B 途径成员之间的震颤和协调持续时间存在明显差异,有些表现出持久的影响,而有些则没有。洛替雷素 B 在肝脏、肾脏、大脑皮层和丘脑中有发现,但在脑干和小脑中未发现,此前推测这两个区域是主要作用部位。代谢组学分析显示特定神经递质和氨基酸谱随时间显著变化。这项研究表明洛替雷素 B 在大脑中积累,而在脑干和小脑中的毒素水平无法检测到,导致酪氨酸等代谢物发生变化,表明随着时间的推移多巴胺能反应具有动态性。还确定了洛替雷素 B 在大脑中病理生理反应的关键途径的时间特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33c5/6597573/32143cdd46b5/41598_2019_45170_Fig1_HTML.jpg

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