Division of Biochemistry, Department of Chemistry, Vienna Institute of Biotechnology at BOKU - University of Natural Resources and Life Sciences, Muthgasse 18, A-1190 Vienna, Austria.
Biochimie. 2012 Mar;94(3):673-83. doi: 10.1016/j.biochi.2011.09.020. Epub 2011 Sep 29.
All phytopathogenic fungi have two catalase-peroxidase paralogues located either intracellularly (KatG1) or extracellularly (KatG2). Here, for the first time a secreted bifunctional, homodimeric catalase-peroxidase (KatG2 from the rice blast fungus Magnaporthe grisea) has been produced heterologously with almost 100% heme occupancy and comprehensively investigated by using a broad set of methods including UV-Vis, ECD and resonance Raman spectroscopy (RR), thin-layer spectroelectrochemistry, mass spectrometry, steady-state & presteady-state spectroscopy. RR spectroscopy reveals that MagKatG2 shows a unique mixed-spin state, non-planar heme b, and a proximal histidine with pronounced imidazolate character. At pH 7.0 and 25 °C, the standard reduction potential E°' of the Fe(III)/Fe(II) couple for the high-spin native protein was found to fall in the range typical for the KatG family. Binding of cyanide was relatively slow at pH 7.0 and 25 °C and with a K(d) value significantly higher than for the intracellular counterpart. Demonstrated by mass spectrometry MagKatG2 has the typical Trp118-Tyr251-Met277 adduct that is essential for its predominantly catalase activity at the unique acidic pH optimum. In addition, MagKatG2 acts as a versatile peroxidase using both one- and two-electron donors. Based on these data, structure-function relationships of extracellular eukaryotic KatGs are discussed with respect to intracellular KatGs and possible role(s) in host-pathogen interaction.
所有植物病原真菌都有两种过氧化氢酶过氧化物酶同工酶,分别位于细胞内(KatG1)或细胞外(KatG2)。在这里,首次异源生产了一种分泌的双功能同二聚体过氧化氢酶过氧化物酶(来自稻瘟病菌 Magnaporthe grisea 的 KatG2),其血红素占有率几乎达到 100%,并使用包括紫外-可见光谱、ECD 和共振拉曼光谱 (RR)、薄层光谱电化学、稳态和预稳态光谱在内的广泛方法进行了全面研究。RR 光谱表明,MagKatG2 显示出独特的混合自旋态、非平面血红素 b 和具有明显咪唑特征的近端组氨酸。在 pH 7.0 和 25°C 下,发现高自旋天然蛋白的 Fe(III)/Fe(II) 偶对的标准还原电位 E°'落在典型的 KatG 家族范围内。在 pH 7.0 和 25°C 下,氰化物的结合相对较慢,K(d) 值明显高于细胞内对应物。质谱证明 MagKatG2 具有典型的 Trp118-Tyr251-Met277 加合物,这对于其在独特的酸性 pH 最佳条件下主要的过氧化氢酶活性是必不可少的。此外,MagKatG2 可作为多功能过氧化物酶,同时使用单电子和双电子供体。基于这些数据,讨论了细胞外真核 KatGs 的结构-功能关系,涉及细胞内 KatGs 以及在宿主-病原体相互作用中的可能作用。