The monoamine oxidase (MAO) gene family encodes for enzymes that perform the oxidative deamination of monoamines, a process required to degrade norepinephrine, serotonin, dopamine, and other amines. While mammalian MAO enzymes, MAO A and MAO B, have been extensively studied, the molecular properties of the other family members are only partly uncovered. This study aims to explore the evolution of MAOs, emphasizing understanding of the MAO gene repertoire among vertebrates. Our analyses show that the duplication that gave rise to MAO A and MAO B occurred in the ancestor of tetrapods, between 408 and 352 million years ago. Nontetrapod jawed vertebrates possess the ancestral preduplicative condition of MAO A/B. Our results also identified a new family member, MAO F, in nontetrapod jawed vertebrates. Thus, most jawed vertebrates possess a repertoire of two MAO genes, MAO A and MAO B in tetrapods and MAO A/B and MAO F in nontetrapod jawed vertebrates, representing different MAO gene lineages. Jawless vertebrates possess the ancestral condition of a single copy gene, MAO A/B/F. Enzymatic assays conducted on the MAO recombinant enzymes of the Indo-Pacific tarpon show that both proteins, MAO A/B and MAO F, have enzymatic and molecular properties more similar to human MAO A, with the former featuring a strikingly higher activity rate when compared with all other MAO enzymes. Our analyses underscore the importance of scanning the tree of life for new gene lineages to understand phenotypic diversity and gain detailed insights into their function.
Evolutionary and Functional Analysis of Monoamine Oxidase F: A Novel Member of the Monoamine Oxidase Gene Family.
单胺氧化酶F的进化和功能分析:单胺氧化酶基因家族的新成员
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作者:Merello Oyarzún Gianluca, Olivares-Costa Montserrat, Basile Lorenzo, Pástor Tammy P, Mendoza-Soto Pablo, Padilla-Santiago Luis, Mardones Gonzalo A, Binda Claudia, Opazo Juan C
| 期刊: | Genome Biology and Evolution | 影响因子: | 2.800 |
| 时间: | 2025 | 起止号: | 2025 Feb 3; 17(2):evae280 |
| doi: | 10.1093/gbe/evae280 | 研究方向: | 免疫/内分泌 |
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