Suppr超能文献

氧化还原状态在光合生物新陈代谢调节中的关键作用。

The key role of the redox status in regulation of metabolism in photosynthesizing organisms.

作者信息

Kornas Andrzej, Kuźniak Elzbieta, Slesak Ireneusz, Miszalski Zbigniew

机构信息

Institute of Biology, Pedagogical University, Kraków, Poland.

出版信息

Acta Biochim Pol. 2010;57(2):143-51. Epub 2010 Jun 17.

Abstract

The redox status of the cell is described by the ratio of reduced to non-reduced compounds. Redox reactions which determine the redox state are an essential feature of all living beings on Earth. However, the first life forms evolved under strongly anoxic conditions of the young Earth, and the redox status probably was based on iron and sulphur compounds. Nowadays, redox reactions in cells have developed in strict connection to molecular oxygen and its derivatives i.e. reactive oxygen species (ROS). Oxygen has started to accumulate on the Earth due to oxygenic photosynthesis. All aspects of aerobic life involve ROS, reactive nitrogen species (RNS), antioxidants and redox regulation. Many different redox-active compounds are involved in the complex of redox processes, including pyridine nucleotides, thioredoxins, glutaredoxins and other thiol/disulphide-containing proteins. Redox regulation is integrated with the redox-reactions in photosynthesis and respiration to achieve an overall energy balance and to maintain a reduced state necessary for the biosynthetic pathways that are reductive in nature. It underlies the physiological and developmental flexibility in plant response to environmental signals.

摘要

细胞的氧化还原状态由还原型化合物与非还原型化合物的比例来描述。决定氧化还原状态的氧化还原反应是地球上所有生物的一个基本特征。然而,最初的生命形式是在年轻地球的强缺氧条件下进化而来的,其氧化还原状态可能基于铁和硫的化合物。如今,细胞中的氧化还原反应已与分子氧及其衍生物即活性氧(ROS)紧密相连地发展起来。由于光合放氧作用,氧气开始在地球上积累。需氧生命的各个方面都涉及活性氧、活性氮(RNS)、抗氧化剂和氧化还原调节。许多不同的氧化还原活性化合物参与了氧化还原过程的复合体,包括吡啶核苷酸、硫氧还蛋白、谷氧还蛋白和其他含硫醇/二硫键的蛋白质。氧化还原调节与光合作用和呼吸作用中的氧化还原反应相结合,以实现整体能量平衡,并维持本质上具有还原性的生物合成途径所需的还原状态。它是植物对环境信号响应中生理和发育灵活性的基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验