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Interconnections of reactive oxygen species homeostasis and circadian rhythm in Neurospora crassa

机译:景天孢子中活性氧稳态和昼夜节律的相互联系

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Significance: Both circadian rhythm and the production of reactive oxygen species (ROS) are fundamental features of aerobic eukaryotic cells. The circadian clock enhances the fitness of organisms by enabling them to anticipate cycling changes in the surroundings. ROS generation in the cell is often altered in response to environmental changes, but oscillations in ROS levels may also reflect endogenous metabolic fluctuations governed by the circadian clock. On the other hand, an effective regulation and timing of antioxidant mechanisms may be crucial in the defense of cellular integrity. Thus, an interaction between the circadian timekeeping machinery and ROS homeostasis or signaling in both directions may be of advantage at all phylogenetic levels. Recent Advances: The Frequency-White Collar-1 and White Collar-2 oscillator (FWO) of the filamentous fungus Neurospora crassa is well characterized at the molecular level. Several members of the ROS homeostasis were found to be controlled by the circadian clock, and ROS levels display circadian rhythm in Neurospora. On the other hand, multiple data indicate that ROS affect the molecular oscillator. Critical Issues: Increasing evidence suggests the interplay between ROS homeostasis and oscillators that may be partially or fully independent of the FWO. In addition, ROS may be part of a complex cellular network synchronizing non-transcriptional oscillators with timekeeping machineries based on the classical transcription-translation feedback mechanism. Future Directions: Further investigations are needed to clarify how the different layers of the bidirectional interactions between ROS homeostasis and circadian regulation are interconnected.
机译:意义:昼夜节律和活性氧(ROS)的产生都是有氧真核细胞的基本特征。昼夜节律时钟使生物能够预测周围环境的循环变化,从而增强了生物的适应性。细胞中的ROS生成通常会因环境​​变化而发生变化,但是ROS水平的波动也可能反映了由生物钟控制的内源性代谢波动。另一方面,抗氧化剂机制的有效调节和时机可能对防御细胞完整性至关重要。因此,在所有系统发生水平上,昼夜节律机制与ROS稳态或双向信号传递之间的相互作用都可能是有利的。最新进展:丝状真菌Neurospora crassa的频白领1和白领2振荡器(FWO)在分子水平上得到了很好的表征。发现ROS稳态的几个成员受昼夜节律控制,并且ROS水平在Neurospora中显示昼夜节律。另一方面,多个数据表明ROS影响分子振荡器。关键问题:越来越多的证据表明,ROS稳态与振荡器之间的相互作用可能部分或完全独立于FWO。此外,ROS可能是复杂蜂窝网络的一部分,该蜂窝网络基于经典的转录-翻译反馈机制,将非转录振荡器与计时设备同步。未来方向:需要进一步研究以阐明ROS稳态与昼夜节律调节之间的双向相互作用的不同层面是如何相互联系的。

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