树突状树突神经元的电沉默修复毒性多谷氨酰胺诱导的运动缺陷。

IF 2.4 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fly Pub Date : 2025-12-01 Epub Date: 2025-06-16 DOI:10.1080/19336934.2025.2519687
Hongyu Miao, Woo Jae Kim
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引用次数: 0

摘要

本研究探讨了聚谷氨酰胺(polyQ)扩增对果蝇幼虫运动的影响,重点研究了IV类树突状乔木(da)神经元的作用。PolyQ扩增与亨廷顿氏病等神经退行性疾病有关,果蝇因其遗传易感性和世代时间短,是研究这些疾病的有价值的模式生物。我们发现在IV类da神经元中表达一种polyQ蛋白会导致显著的运动缺陷。具体而言,polyQ表达的幼虫爬行速度较慢,转身频率增加,表明运动受损。我们研究中最有趣的发现是电沉默IV类da神经元完全挽救了由polyQ表达引起的运动缺陷。通过表达钾离子通道使神经元不那么活跃,我们有效地逆转了运动缺陷。这表明调节这些神经元的活性可能是治疗多q疾病的一种有希望的治疗方法。我们的发现对理解多q疾病和开发新的治疗方法具有重要意义。通过电沉默这些神经元,我们可以防止多q诱导的阳离子通道的有害影响,这些阳离子通道被认为会破坏细胞功能。这为探索电沉默作为多q疾病的潜在治疗方法开辟了令人兴奋的可能性,为未来针对这些破坏性疾病的潜在机制的治疗提供了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical silencing of dendritic arborization neurons rescues toxic polyglutamine-induced locomotion defect.

This study investigates the effects of polyglutamine (polyQ) expansions on the locomotion of Drosophila larvae, focusing on the role of class IV dendritic arborization (da) neurons. PolyQ expansions are associated with neurodegenerative diseases like Huntington's disease, and Drosophila is a valuable model organism for studying these diseases due to its genetic tractability and short generation time. We found that expressing a polyQ protein in class IV da neurons caused significant locomotion deficits. Specifically, larvae with polyQ expression exhibited slower crawling speed and increased turn frequency, indicating impaired movement. The most intriguing finding of our study was that electrically silencing class IV da neurons completely rescued the locomotion deficits caused by polyQ expression. By expressing a potassium channel that makes the neurons less active, we effectively reversed the locomotion defects. This suggests that modulating the activity of these neurons could be a promising therapeutic approach for treating polyQ diseases. Our findings have significant implications for understanding polyQ diseases and developing new therapeutic approaches. By electrically silencing these neurons, we may be preventing the harmful effects of polyQ-induced cation channels, which are thought to disrupt cellular function. This opens up exciting possibilities for exploring electrical silencing as a potential treatment for polyQ diseases, offering hope for future therapies that target the underlying mechanisms of these devastating conditions.

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来源期刊
Fly
Fly 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
17
审稿时长
>12 weeks
期刊介绍: Fly is the first international peer-reviewed journal to focus on Drosophila research. Fly covers a broad range of biological sub-disciplines, ranging from developmental biology and organogenesis to sensory neurobiology, circadian rhythm and learning and memory, to sex determination, evolutionary biology and speciation. We strive to become the “to go” resource for every researcher working with Drosophila by providing a forum where the specific interests of the Drosophila community can be discussed. With the advance of molecular technologies that enable researchers to manipulate genes and their functions in many other organisms, Fly is now also publishing papers that use other insect model systems used to investigate important biological questions. Fly offers a variety of papers, including Original Research Articles, Methods and Technical Advances, Brief Communications, Reviews and Meeting Reports. In addition, Fly also features two unconventional types of contributions, Counterpoints and Extra View articles. Counterpoints are opinion pieces that critically discuss controversial papers questioning current paradigms, whether justified or not. Extra View articles, which generally are solicited by Fly editors, provide authors of important forthcoming papers published elsewhere an opportunity to expand on their original findings and discuss the broader impact of their discovery. Extra View authors are strongly encouraged to complement their published observations with additional data not included in the original paper or acquired subsequently.
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