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在光合电子流的氧化还原层级中,2-半胱氨酸过氧化物酶介导的过氧化物解毒的植物特异性功能。

The plant-specific function of 2-Cys peroxiredoxin-mediated detoxification of peroxides in the redox-hierarchy of photosynthetic electron flux.

作者信息

König Janine, Baier Margarete, Horling Frank, Kahmann Uwe, Harris Gary, Schürmann Peter, Dietz Karl-Josef

机构信息

Physiology and Biochemistry of Plants, University of Bielefeld, 33501 Bielefeld, Germany.

出版信息

Proc Natl Acad Sci U S A. 2002 Apr 16;99(8):5738-43. doi: 10.1073/pnas.072644999. Epub 2002 Apr 2.

Abstract

The 2-cysteine peroxiredoxins (2-Cys Prx) constitute an ancient family of peroxide detoxifying enzymes and have acquired a plant-specific function in the oxygenic environment of the chloroplast. Immunocytochemical analysis and work with isolated intact chloroplasts revealed a reversible binding of the oligomeric form of 2-Cys Prx to the thylakoid membrane. The oligomeric form of the enzyme was enhanced under stress. The 2-Cys Prx has a broad substrate specificity with activity toward hydrogen peroxides and complex alkyl hydroperoxides. During the peroxide reduction reaction, 2-Cys Prx is alternatively oxidized and reduced as it catalyzes an electron flow from an electron donor to peroxide. Escherichia coli thioredoxin, but also spinach thioredoxin f and m were able to reduce oxidized 2-Cys Prx. The midpoint redox potential of -315 mV places 2-Cys Prx reduction after Calvin cycle activation and before switching the malate valve for export of excess reduction equivalents to the cytosol. Thus the 2-Cys Prx has a defined and preferential place in the hierarchy of photosynthetic electron transport. The activity of 2-Cys Prx also is linked to chloroplastic NAD(P)H metabolism as indicated by the presence of the reduced form of the enzyme after feeding dihydroxyacetone phosphate to intact chloroplasts. The function of the 2-Cys Prx is therefore not confined to its role in the water-water cycle pathway for energy dissipation in photosynthesis but also mediates peroxide detoxification in the plastids during the dark phase.

摘要

双半胱氨酸过氧化物酶(2-Cys Prx)构成了一个古老的过氧化物解毒酶家族,并在叶绿体的有氧环境中获得了植物特有的功能。免疫细胞化学分析以及对分离出的完整叶绿体的研究表明,2-Cys Prx的寡聚体形式与类囊体膜存在可逆结合。该酶的寡聚体形式在胁迫下会增加。2-Cys Prx具有广泛的底物特异性,对过氧化氢和复杂的烷基氢过氧化物都有活性。在过氧化物还原反应过程中,2-Cys Prx在催化电子从电子供体流向过氧化物时会交替被氧化和还原。大肠杆菌硫氧还蛋白,以及菠菜硫氧还蛋白f和m都能够还原氧化型的2-Cys Prx。-315 mV的中点氧化还原电位表明,2-Cys Prx的还原发生在卡尔文循环激活之后,以及将多余的还原当量输出到细胞质的苹果酸阀切换之前。因此,2-Cys Prx在光合电子传递层次结构中有明确且优先的位置。如向完整叶绿体投喂磷酸二羟丙酮后酶的还原形式的存在所示,2-Cys Prx的活性也与叶绿体NAD(P)H代谢相关。因此,2-Cys Prx的功能不仅限于其在光合作用中能量耗散的水-水循环途径中的作用,还在黑暗阶段介导质体中的过氧化物解毒。

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本文引用的文献

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