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基于硫醇的过氧化物酶和抗坏血酸过氧化物酶:为何植物在进行光合作用的叶绿体中依赖多种过氧化物酶系统?

Thiol-Based Peroxidases and Ascorbate Peroxidases: Why Plants Rely on Multiple Peroxidase Systems in the Photosynthesizing Chloroplast?

作者信息

Dietz Karl-Josef

机构信息

Biochemistry and Physiology of Plants, Faculty of Biology, W5-134, Bielefeld University, University Street 25, 33501 Bielefeld, Germany.

出版信息

Mol Cells. 2016 Jan;39(1):20-5. doi: 10.14348/molcells.2016.2324. Epub 2016 Jan 25.

Abstract

Photosynthesis is a highly robust process allowing for rapid adjustment to changing environmental conditions. The efficient acclimation depends on balanced redox metabolism and control of reactive oxygen species release which triggers signaling cascades and potentially detrimental oxidation reactions. Thiol peroxidases of the peroxiredoxin and glutathione peroxidase type, and ascorbate peroxidases are the main peroxide detoxifying enzymes of the chloroplast. They use different electron donors and are linked to distinct redox networks. In addition, the peroxiredoxins serve functions in redox regulation and retrograde signaling. The complexity of plastid peroxidases is discussed in context of suborganellar localization, substrate preference, metabolic coupling, protein abundance, activity regulation, interactions, signaling functions, and the conditional requirement for high antioxidant capacity. Thus the review provides an opinion on the advantage of linking detoxification of peroxides to different enzymatic systems and implementing mechanisms for their inactivation to enforce signal propagation within and from the chloroplast.

摘要

光合作用是一个高度稳健的过程,能够快速适应不断变化的环境条件。有效的适应性取决于平衡的氧化还原代谢以及对活性氧释放的控制,活性氧的释放会触发信号级联反应以及潜在的有害氧化反应。过氧化物酶体过氧化物酶和谷胱甘肽过氧化物酶类型的硫醇过氧化物酶以及抗坏血酸过氧化物酶是叶绿体中主要的过氧化物解毒酶。它们使用不同的电子供体,并与不同的氧化还原网络相连。此外,过氧化物酶在氧化还原调节和逆行信号传导中发挥作用。本文从亚细胞器定位、底物偏好、代谢偶联、蛋白质丰度、活性调节、相互作用、信号功能以及对高抗氧化能力的条件需求等方面讨论了质体过氧化物酶的复杂性。因此,本综述就将过氧化物解毒与不同酶系统相联系以及实施使其失活的机制以加强叶绿体内部和来自叶绿体的信号传播的优势提出了观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a368/4749869/23c1df7728da/molce-39-1-20f1.jpg

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