遗传性维生素B6缺乏会加剧果蝇的酒精行为反应、代谢和毒性。

IF 3.2 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Benjamin Wang, Wenqin Fu, Atsushi Ueda, Hardik Shah, Chun-Fang Wu, Wanhao Chi, Xiaoxi Zhuang
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引用次数: 0

摘要

酒精滥用是可预防死亡的主要原因。酒精影响大脑功能和新陈代谢,包括GABA传递和维生素B6 (VB6)水平。VB6是GABA合成和降解的辅助因子;然而,缺乏VB6与饮酒之间的相互作用尚不清楚。我们利用膳食VB6操作和携带pyridox(am)ine-5'-磷酸氧化酶(PNPO)突变的果蝇模型来检验这一点,PNPO是将膳食VB6转化为活性VB6的关键酶。我们的研究结果表明,PNPO缺乏减少酒精厌恶并增加酒精消费,而酒精消费加剧了VB6缺乏,这表明一个恶性循环。生物化学方面,PNPO缺乏和酒精暴露会影响氨基酸代谢,改变抑制性神经递质GABA和甘氨酸的水平。此外,PNPO缺乏和酒精暴露协同导致死亡,这可以通过低剂量而不是高剂量的VB6补充来挽救。这些结果强调了VB6在公共卫生方面的重要性,特别是在酒精使用和酒精毒性方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic vitamin B6 deficiency exacerbates alcohol behavioral responses, metabolism, and toxicity in Drosophila.

Alcohol abuse is a leading cause of preventable deaths. Alcohol affects brain function and metabolism, including GABA transmission and vitamin B6 (VB6) levels. VB6 is a cofactor for GABA synthesis and degradation; however, the interaction between VB6 deficiency and alcohol consumption remains unknown. We utilized dietary VB6 manipulations and Drosophila models with mutations in pyridox(am)ine-5'-phosphate oxidase (PNPO), a key enzyme in converting dietary VB6 to active VB6, to examine this. Our findings demonstrate that PNPO deficiency reduces alcohol aversion and increases alcohol consumption, whereas alcohol consumption worsens VB6 deficiency, suggesting a vicious cycle. Biochemically, PNPO deficiency and alcohol exposure converge on amino acid metabolism, altering levels of inhibitory neurotransmitters GABA and glycine. Moreover, PNPO deficiency and alcohol exposure synergistically lead to lethality, which can be rescued by low dose but not high dose VB6 supplementation. These results highlight the significance of VB6 in public health, especially in alcohol use and alcohol toxicity.

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来源期刊
Human molecular genetics
Human molecular genetics 生物-生化与分子生物学
CiteScore
6.90
自引率
2.90%
发文量
294
审稿时长
2-4 weeks
期刊介绍: Human Molecular Genetics concentrates on full-length research papers covering a wide range of topics in all aspects of human molecular genetics. These include: the molecular basis of human genetic disease developmental genetics cancer genetics neurogenetics chromosome and genome structure and function therapy of genetic disease stem cells in human genetic disease and therapy, including the application of iPS cells genome-wide association studies mouse and other models of human diseases functional genomics computational genomics In addition, the journal also publishes research on other model systems for the analysis of genes, especially when there is an obvious relevance to human genetics.
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