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A possible role for reactive oxygen species in the regulation of an ultradian rhythm in Paramecium

机译:反应性氧物种在参数中的超级节律中的可能作用

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Reactive oxygen species (ROS) are essential for the viability of cells, while excess levels can be lethal by damaging proteins and nucleic acids. It is imperative to identify and elucidate the various cellular functions for which ROS molecules have a role. In this paper, the role of ROS in the regulation of ultradian rhythms in the ciliated protozoan Paramecium tetraurelia is examined. The frequency of spontaneous behavioral responses in Parameciun display a well-established ultradian rhythm with a periodicity of approximately 50-60 min. The artificial elevation of cytoplasmic ROS concentrations is shown to completely eliminate the rhythm in a reversible manner. Furthermore, the use of RNA interference techniques to knockdown the expression of superoxide dismutase, an enzyme that scavenges excess cytoplasmic ROS, also eliminates the ultradian rhythm. These data indicate that the concentration of ROS plays a role in the generation of the ultradian rhythm. A hypothesis is proposed for the generation of this ultradian rhythm that incorporates a role for ROS.
机译:活性氧物质(ROS)对于细胞的可行性至关重要,而通过损伤蛋白质和核酸可以致死过量水平。必须识别和阐明ROS分子具有作用的各种细胞功能。在本文中,研究了ROS在丝状原子序列酶肉豆蔻菌中超级节律调节中的作用。 Parameciun中的自发行为响应的频率显示出完善的超级节律,周期性约为50-60分钟。显示细胞质ROS浓度的人造升高显示以可逆的方式完全消除节律。此外,使用RNA干扰技术敲低过氧化物歧化酶的表达,一种清除过量细胞质ROS的酶,也消除了超级节律。这些数据表明ROS的浓度在超级节奏的产生中起着作用。提出了一个假设,用于生成这种超级节律,该节奏融入了ROS的作用。

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