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Hydrogen Peroxide and Redox Regulation of Developments

机译:过氧化氢和氧化还原的发展规律

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摘要

Reactive oxygen species (ROS), which were originally classified as exclusively deleterious compounds, have gained increasing interest in the recent years given their action as bona fide signalling molecules. The main target of ROS action is the reversible oxidation of cysteines, leading to the formation of disulfide bonds, which modulate protein conformation and activity. ROS, endowed with signalling properties, are mainly produced by NADPH oxidases (NOXs) at the plasma membrane, but their action also involves a complex machinery of multiple redox-sensitive protein families that differ in their subcellular localization and their activity. Given that the levels and distribution of ROS are highly dynamic, in part due to their limited stability, the development of various fluorescent ROS sensors, some of which are quantitative (ratiometric), represents a clear breakthrough in the field and have been adapted to both ex vivo and in vivo applications. The physiological implication of ROS signalling will be presented mainly in the frame of morphogenetic processes, embryogenesis, regeneration, and stem cell differentiation. Gain and loss of function, as well as pharmacological strategies, have demonstrated the wide but specific requirement of ROS signalling at multiple stages of these processes and its intricate relationship with other well-known signalling pathways.
机译:最初被归类为有害化合物的活性氧(ROS)近年来由于其作为真正信号分子的作用而受到越来越多的关注。 ROS作用的主要目标是半胱氨酸的可逆氧化,导致形成二硫键,从而调节蛋白质的构象和活性。具有信号传导特性的ROS主要由质膜上的NADPH氧化酶(NOX)产生,但它们的作用还涉及多个氧化还原敏感蛋白家族的复杂机制,这些蛋白家族的亚细胞定位和活性不同。鉴于ROS的水平和分布是高度动态的,部分是由于其有限的稳定性,因此开发了各种荧光ROS传感器,其中一些是定量的(比例),代表了该领域的明显突破,并且已经适应了两种离体和体内应用。 ROS信号的生理意义将主要在形态发生过程,胚胎发生,再生和干细胞分化的框架中呈现。功能的获得和丧失以及药理学策略已经证明了在这些过程的多个阶段对ROS信号的广泛但特定的要求,以及其与其他众所周知的信号通路的复杂关系。

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