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Functional and evolutionary characterization of Ohr proteins in eukaryotes reveals many active homologs among pathogenic fungi

机译:真核生物中Ohr蛋白的功能和进化特征揭示了病原真菌之间许多活跃的同源物

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摘要

Ohr and OsmC proteins comprise two subfamilies within a large group of proteins that display Cys-based, thiol dependent peroxidase activity. These proteins were previously thought to be restricted to prokaryotes, but we show here, using iterated sequence searches, that Ohr/OsmC homologs are also present in 217 species of eukaryotes with a massive presence in Fungi (186 species). Many of these eukaryotic Ohr proteins possess an N-terminal extension that is predicted to target them to mitochondria. We obtained recombinant proteins for four eukaryotic members of the Ohr/OsmC family and three of them displayed lipoyl peroxidase activity. Further functional and biochemical characterization of the Ohr homologs from the ascomycete fungus Mycosphaerella fijiensis Mf_1 (MfOhr), the causative agent of Black Sigatoka disease in banana plants, was pursued. Similarly to what has been observed for the bacterial proteins, we found that: (i) the peroxidase activity of MfOhr was supported by DTT or dihydrolipoamide (dithiols), but not by β-mercaptoethanol or GSH (monothiols), even in large excess; (ii) MfOhr displayed preference for organic hydroperoxides (CuOOH and tBOOH) over hydrogen peroxide; (iii) MfOhr presented extraordinary reactivity towards linoleic acid hydroperoxides (k=3.18 (±2.13)×108 M−1 s−1). Both Cys87 and Cys154 were essential to the peroxidase activity, since single mutants for each Cys residue presented no activity and no formation of intramolecular disulfide bond upon treatment with hydroperoxides. The pKa value of the Cysp residue was determined as 5.7±0.1 by a monobromobimane alkylation method. Therefore, eukaryotic Ohr peroxidases share several biochemical features with prokaryotic orthologues and are preferentially located in mitochondria.
机译:Ohr和OsmC蛋白在一大组蛋白中包含两个亚家族,这些蛋白显示出基于Cys的,硫醇依赖性的过氧化物酶活性。以前认为这些蛋白质仅限于原核生物,但我们在这里使用迭代序列搜索显示,Ohr / OsmC同源物也存在于217种真核生物中,并大量存在于真菌中(186种)。这些真核Ohr蛋白中有许多具有N末端延伸,预计将其靶向线粒体。我们获得了Ohr / OsmC家族四个真核成员的重组蛋白,其中三个具有脂酰过氧化物酶活性。进一步的功能和生化特征来自子囊真菌真菌Mycosphaerella fijiensis Mf_1(MfOhr),香蕉植物中Black Sigatoka病的病原体,进行了进一步的功能和生化鉴定。与观察到的细菌蛋白类似,我们发现:(i)Df或二氢脂酰胺(dithiols)支持MfOhr的过氧化物酶活性,但β-巯基乙醇或GSH(一硫醇)则不支持MfOhr,即使过量也是如此; (ii)MfOhr比过氧化氢更偏爱有机氢过氧化物(CuOOH和tBOOH); (iii)MfOhr对亚油酸氢过氧化物具有非凡的反应性(k = 3.18(±2.13)×10 8 M -1 s -1 ) 。 Cys 87 和Cys 154 对过氧化物酶活性都是必不可少的,因为每个Cys残基的单个突变体在用氢过氧化物处理后都没有活性,也没有形成分子内二硫键。通过单溴二烯烷基化方法将Cysp残基的pKa值确定为5.7±0.1。因此,真核Ohr过​​氧化物酶与原核直向同源物具有几个生化特征,并且优先位于线粒体中。

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