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Circadian Rhythm Neuropeptides in Drosophila: Signals for Normal Circadian Function and Circadian Neurodegenerative Disease

机译:果蝇的昼夜节律性神经肽:正常昼夜节律功能和昼夜节律性神经退行性疾病的信号

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摘要

Circadian rhythm is a ubiquitous phenomenon in many organisms ranging from prokaryotes to eukaryotes. During more than four decades, the intrinsic and exogenous regulations of circadian rhythm have been studied. This review summarizes the core endogenous oscillation in Drosophila and then focuses on the neuropeptides, neurotransmitters and hormones that mediate its outputs and integration in Drosophila and the links between several of these (pigment dispersing factor (PDF) and insulin-like peptides) and neurodegenerative disease. These signaling molecules convey important network connectivity and signaling information for normal circadian function, but PDF and insulin-like peptides can also convey signals that lead to apoptosis, enhanced neurodegeneration and cognitive decline in flies carrying circadian mutations or in a senescent state.
机译:在从原核生物到真核生物的许多生物中,昼夜节律是普遍存在的现象。在过去的四十年中,研究了昼夜节律的内在和外在规律。这篇综述总结了果蝇的核心内源性振荡,然后重点研究了介导果蝇的输出和整合的神经肽,神经递质和激素,以及其中一些(色素分散因子(PDF)和胰岛素样肽)与神经退行性疾病之间的联系。 。这些信号分子为正常的生物钟功能传递重要的网络连通性和信号信息,但是PDF和类胰岛素肽也可以传递信号,导致携带生物钟突变或处于衰老状态的果蝇发生凋亡,增强神经变性和认知能力下降。

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