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原核生物中粪卟啉原氧化酶和原卟啉原氧化酶的分子进化、结构与功能

The Molecular Evolution, Structure, and Function of Coproporphyrinogen Oxidase and Protoporphyrinogen Oxidase in Prokaryotes.

作者信息

Zámocký Marcel, Hofbauer Stefan, Gabler Thomas, Furtmüller Paul G

机构信息

Laboratory of Phylogenomic Ecology, Institute of Molecular Biology, Slovak Academy of Sciences, Dúbravská Cesta 21, SK-84551 Bratislava, Slovakia.

Department of Inorganic Chemistry, Faculty of Natural Sciences, Comenius University in Bratislava, Mlynská Dolina, Ilkovičova 6, SK-84215 Bratislava, Slovakia.

出版信息

Biology (Basel). 2023 Dec 15;12(12):1527. doi: 10.3390/biology12121527.

Abstract

Coproporphyrinogen oxidase (CgoX) and protoporphyrinogen oxidase (PgoX) catalyze the oxidation of the flexible cyclic tetrapyrrole of porphyrinogen compounds into fully conjugated, planar macrocyclic porphyrin compounds during heme biosynthesis. These enzymes are activated via different pathways. CgoX oxidizes coproporphyrinogen III to coproporphyrin III in the coproporphyrin-dependent pathway, whereas PgoX oxidizes protoporphyrinogen IX to protoporphyrin IX in the penultimate step of the protoporphyrin-dependent pathway. The phylogenetic analysis presented herein demonstrates a clear differentiation between the two enzyme classes, as evidenced by the clustering of sequences in distinct clades, and it shows that, at the origin of porphyrinogen-type oxidase evolution, PgoXs from cyanobacteria were found, which were noticeably separated from descendant PgoX representatives of and all later PgoX variants, leading to many eukaryotic clades. CgoX sequences originating from the monoderm and were well separated from the predecessor clades containing PgoX types and represent a peculiar type of gene speciation. The structural similarities and differences between these two oxidases are discussed based on their protein sequence alignment and a structural comparison.

摘要

粪卟啉原氧化酶(CgoX)和原卟啉原氧化酶(PgoX)在血红素生物合成过程中催化卟啉原化合物的柔性环状四吡咯氧化为完全共轭的平面大环卟啉化合物。这些酶通过不同途径被激活。CgoX在依赖粪卟啉的途径中将粪卟啉原III氧化为粪卟啉III,而PgoX在依赖原卟啉途径的倒数第二步中将原卟啉原IX氧化为原卟啉IX。本文进行的系统发育分析表明这两类酶之间存在明显差异,不同进化枝中的序列聚类证明了这一点,并且分析表明,在卟啉原型氧化酶进化起源时,发现了来自蓝细菌的PgoX,它们与后来的所有PgoX变体以及真核生物进化枝中的后代PgoX代表明显分离。源自单胚层的CgoX序列与包含PgoX类型的前身进化枝分离良好,代表了一种特殊的基因物种形成类型。基于这两种氧化酶的蛋白质序列比对和结构比较,讨论了它们之间的结构异同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b6/10740692/deaef08ea415/biology-12-01527-g001.jpg

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