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首页> 外文期刊>Annals of the New York Academy of Sciences >Hydrogen sulfide signaling: interactions with nitric oxide and reactive oxygen species
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Hydrogen sulfide signaling: interactions with nitric oxide and reactive oxygen species

机译:硫化氢信号:与一氧化氮和活性氧的相互作用

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Signaling in cells involving reactive compounds is well established. Reactive oxygen species (ROS) and nitric oxide (NO) are known to be extremely influential in the control of a range of physiological responses in many organisms, from animals to plants. Often, their generation is triggered in reaction to stress, and it is common for ROS and NO metabolism to interact to give a coordinated response. Recently, hydrogen sulfide (H_2S) has also been found to be an important signaling molecule, being shown to be involved in vascular tone in animals. Of relevance to respiration, in plants, H_2S has been shown to affect stomatal apertures and the transpiration stream, while, in animals, H2S has been shown to be a source of electrons for ATP synthesis in mitochondria. However, in signaling, H_2S does not work in isolation, and it is likely that it will interact with both ROS and NO. This may occur at a variety of levels, from influencing the generation of such molecules, interacting directly, or competing for control of downstream signaling events. A full understanding of the impact of this toxic molecule in the control of cells requires all these factors to be taken into account.
机译:涉及反应性化合物的细胞中的信号传导已得到充分确立。众所周知,活性氧(ROS)和一氧化氮(NO)在控制从动物到植物的许多生物中的一系列生理反应中都具有极大的影响力。通常,它们的产生是在对压力的反应中触发的,ROS和NO代谢相互作用以产生协调的反应是很常见的。最近,还发现硫化氢(H_2S)是重要的信号分子,被证明与动物的血管紧张度有关。与呼吸有关,在植物中,H_2S已显示会影响气孔孔径和蒸腾流,而在动物中,H2S已显示是线粒体中ATP合成的电子来源。但是,在信号传递中,H_2S不能孤立地工作,并且很可能会与ROS和NO相互作用。从影响此类分子的产生,直接相互作用或竞争控制下游信号事件的角度来看,这可能发生在多种水平上。全面了解这种有毒分子在细胞控制中的作用,需要考虑所有这些因素。

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