Oxidative Stress and Plant Proteomics Group, Institute for Plant Science and Microbiology, University of Hamburg, Ohnhorststrasse 18, 22609 Hamburg, Germany.
Dpto de Biología Animal, Biología Vegetal y Ecología (Lab. Fisiología Vegetal), Facultad de Ciencias-Universidade da Coruña, A Zapateira s/n, 15071 A Coruña, Spain.
Int J Mol Sci. 2018 Sep 21;19(10):2876. doi: 10.3390/ijms19102876.
Class III peroxidases are heme-containing proteins of the secretory pathway with a high redundance and versatile functions. Many soluble peroxidases have been characterized in great detail, whereas only a few studies exist on membrane-bound isoenzymes. Membrane localization of class III peroxidases has been demonstrated for tonoplast, plasma membrane and detergent resistant membrane fractions of different plant species. In silico analysis revealed transmembrane domains for about half of the class III peroxidases that are encoded by the maize () genome. Similar results have been found for other species like thale-cress (), barrel medic () and rice (). Besides this, soluble peroxidases interact with tonoplast and plasma membranes by protein⁻protein interaction. The topology, spatiotemporal organization, molecular and biological functions of membrane-bound class III peroxidases are discussed. Besides a function in membrane protection and/or membrane repair, additional functions have been supported by experimental data and phylogenetics.
III 类过氧化物酶是分泌途径中含有血红素的蛋白质,具有高度的冗余性和多功能性。许多可溶性过氧化物酶已经被详细地描述,而只有少数关于膜结合同工酶的研究存在。已经证明 III 类过氧化物酶在不同植物物种的液泡膜、质膜和去污剂抗性膜部分中存在膜定位。计算机分析显示,约有一半由玉米()基因组编码的 III 类过氧化物酶具有跨膜结构域。在其他物种如拟南芥()、毛蕊花()和水稻()中也发现了类似的结果。除此之外,可溶性过氧化物酶通过蛋白质-蛋白质相互作用与液泡膜和质膜相互作用。讨论了膜结合 III 类过氧化物酶的拓扑结构、时空组织、分子和生物学功能。除了在膜保护和/或膜修复中的功能外,实验数据和系统发育学还支持了其他功能。