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青蒿素通过靶向腺苷酸环化酶5-鸟苷三磷酸环化水解酶1轴,在大鼠体内引发四氢生物蝶呤和多巴胺的级联生成,从而缓解帕金森病。

Artemisinin alleviates Parkinson's disease by targeting Adcy5-Gch1 axis to trigger a cascade generation of BH4 and dopamine in rats.

作者信息

Yang Xin-Xing, Wang Guo-Qing, Wen Qian, Zhao Yu-Jia, Li Dai-di, Zhang Feng

机构信息

Key Laboratory of Basic Pharmacology of Ministry of Education and Joint International Research Laboratory of Ethnomedicine of Ministry of Education and Key Laboratory of Basic Pharmacology of Guizhou Province and Laboratory Animal Center, Zunyi Medical University, Zunyi, Guizhou, China.

出版信息

Genome Biol. 2025 Sep 4;26(1):267. doi: 10.1186/s13059-025-03712-5.

Abstract

BACKGROUND

Parkinson's disease is a highly prevalent neurodegenerative disorder. Hyposecretion of dopamine (DA) is the end result in the pathology of Parkinson's disease. Unfortunately, safe and efficient therapeutic drugs are deficient. Tyrosine hydroxylase is the rate-limiting enzyme for DA synthesis, could hydroxylate tyrosine and generate levodopa with tetrahydrobiopterin (BH4) as an indispensable coenzyme. Furthermore, BH4 was confirmed to confer neuroprotection against Parkinson's disease. Thus, regulation of BH4 synthesis was verified to become a promising therapeutic strategy for Parkinson's disease.

RESULTS

We demonstrate that artemisinin effectively produced neuroprotection against Parkinson's disease in rats. Integrated analysis of midbrain proteomics and non-targeted metabolomics suggests that artemisinin might target adenylate cyclase 5 (Adcy5) to increase GTP cyclohydrolase 1 (Gch1, BH4 synthetase) expression to further boost BH4 synthesis. To verify this hypothesis, molecular docking experiments demonstrate that ART could directly bind to Adcy5. Artemisinin increases Adcy5 and Gch1 expressions and BH4 production both in vivo and in vitro. Further rescue experiments demonstrate that artemisinin-generated DA neuroprotection and hypersecretion of DA and BH4 disappears after inhibition of Adcy5 or Gch1 in vitro. Additionally, suppression of Adcy5 aggravates Parkinson's disease manifestation, decreases midbrain DA and BH4 production and down-regulated Gch1 expression in vivo.

CONCLUSIONS

Artemisinin mediates neuroprotection against Parkinson's disease via regulation of Adcy5-Gch1-BH4 axis in rats. These findings present a beneficial potential for future application of artemisinin on Parkinson's disease treatment.

摘要

背景

帕金森病是一种高度流行的神经退行性疾病。多巴胺(DA)分泌不足是帕金森病病理过程的最终结果。不幸的是,安全有效的治疗药物匮乏。酪氨酸羟化酶是DA合成的限速酶,可将酪氨酸羟化并在四氢生物蝶呤(BH4)作为不可或缺的辅酶的情况下生成左旋多巴。此外,BH4被证实对帕金森病具有神经保护作用。因此,调节BH4合成被证实是一种有前景的帕金森病治疗策略。

结果

我们证明青蒿素能有效地对大鼠帕金森病产生神经保护作用。中脑蛋白质组学和非靶向代谢组学的综合分析表明,青蒿素可能靶向腺苷酸环化酶5(Adcy5)以增加鸟苷三磷酸环化水解酶1(Gch1,BH4合成酶)的表达,从而进一步促进BH4合成。为了验证这一假设,分子对接实验表明青蒿素能直接与Adcy5结合。青蒿素在体内和体外均能增加Adcy5和Gch1的表达以及BH4的产生。进一步的挽救实验表明,在体外抑制Adcy5或Gch1后,青蒿素产生的DA神经保护作用以及DA和BH4的分泌增加消失。此外,抑制Adcy5会加重帕金森病的表现,降低中脑DA和BH4的产生,并下调体内Gch1的表达。

结论

青蒿素通过调节大鼠体内的Adcy5 - Gch1 - BH4轴介导对帕金森病的神经保护作用。这些发现为青蒿素未来在帕金森病治疗中的应用提供了有益的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47c3/12409925/ac0549bd0dca/13059_2025_3712_Fig1_HTML.jpg

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