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Redox signalling:from nitric oxide to oxidized lipids

机译:氧化还原信号传导:从一氧化氮到氧化脂质

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Cellular redox signalling is mediated by the post-translational modification of proteins in signal-transduction pathways by ROS/RNS (reactive oxygen species/reactive nitrogen species) or the products derived from their reactions.NO is perhaps the best understood in this regard with two important modifications of proteins known to induce conformational changes leading to modulation of function.The first is the addition of NO to haem groups as shown for soluble guanylate cyclase and the newly discovered NO/ cytochrome c oxidase signalling pathway in mitochondria.The second mechanism is through the modification of thiols by NO to form an S-nitrosated species.Other ROS/RNS can also modify signalling proteins although the mechanisms are not as clearly defined.For example,electrophilic lipids,formed as the reaction products of oxidation reactions,orchestrate adaptive responses in the vasculature by reacting with nucleophilic cysteine residues.In modifying signalling proteins ROS/RNS appear to change the overall activity of signalling pathways in a process that we have termed 'redox tone'.In this review,we discuss these different mechanisms of redox cell signalling,and give specific examples of ROS/RNS participation in signal transduction.
机译:细胞的氧化还原信号传导是通过在由ROS / RNS信号转导途径(反应性氧物质/活性氮物质)的蛋白质或产物的翻译后修饰从它们衍生reactions.NO介导的也许是最好在这方面具有两个理解已知诱导的构象变化,导致function.The的调制首先是增加NO的至血红素基团示出了用于可溶性鸟苷酸环化酶和新发现的NO /细胞色素C氧化酶的信号传导途径在mitochondria.The第二种机制是通过蛋白质的重要​​的修改通过NO硫醇的修改,以形成S-亚硝化species.Other ROS / RNS还可以修改信号蛋白虽然机制并不清楚作为例子defined.For,亲电脂质,形成为氧化反应的反应产物,协调适应性反应在通过与亲核半胱氨酸residues.In修改信号蛋白反应ROS脉管/ RNS出现吨Ø改变一个过程,我们称之为“氧化还原tone'.In这条信号通路的全部活动中,我们讨论的氧化还原细胞信号转导的这些不同的机制,并给予信号转导ROS / RNS参与的具体例子。

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