Martínez-Núñez Mario Alberto, Rodríguez-Escamilla Zuemy, Rodríguez-Vázquez Katya, Pérez-Rueda Ernesto
Laboratorio de Estudios Ecogenómicos, Facultad de Ciencias, Unidad Académica de Ciencias y Tecnología de la UNAM en Yucatán, Universidad Nacional Autónoma de México, Carretera Sierra Papacal-Chuburna Km. 5, C.P. 97302, Mérida, Yucatán, Mexico.
Departamento de Microbiología, Instituto de Biotecnología, Universidad Nacional, Autónoma de México, C.P. 62210, Cuernavaca, Morelos, Mexico.
Life (Basel). 2017 Jul 13;7(3):30. doi: 10.3390/life7030030.
The metabolic pathways that carry out the biochemical transformations sustaining life depend on the efficiency of their associated enzymes. In recent years, it has become clear that promiscuous enzymes have played an important role in the function and evolution of metabolism. In this work we analyze the repertoire of promiscuous enzymes in 89 non-redundant genomes of the Archaea cellular domain. Promiscuous enzymes are defined as those proteins with two or more different Enzyme Commission (E.C.) numbers, according the Kyoto Encyclopedia of Genes and Genomes (KEGG) database. From this analysis, it was found that the fraction of promiscuous enzymes is lower in Archaea than in Bacteria. A greater diversity of superfamily domains is associated with promiscuous enzymes compared to specialized enzymes, both in Archaea and Bacteria, and there is an enrichment of substrate promiscuity rather than catalytic promiscuity in the archaeal enzymes. Finally, the presence of promiscuous enzymes in the metabolic pathways was found to be heterogeneously distributed at the domain level and in the phyla that make up the Archaea. These analyses increase our understanding of promiscuous enzymes and provide additional clues to the evolution of metabolism in Archaea.
执行维持生命的生化转化的代谢途径取决于其相关酶的效率。近年来,很明显,多功能酶在代谢的功能和进化中发挥了重要作用。在这项工作中,我们分析了古菌细胞域89个非冗余基因组中的多功能酶库。根据京都基因与基因组百科全书(KEGG)数据库,多功能酶被定义为具有两个或更多不同酶委员会(E.C.)编号的蛋白质。通过这项分析发现,古菌中多功能酶的比例低于细菌。与专门酶相比,在古菌和细菌中,多功能酶都与更多样化的超家族结构域相关,并且古菌酶中底物多能性的富集程度高于催化多能性。最后,发现多功能酶在代谢途径中的存在在域水平和构成古菌的门中分布不均。这些分析增进了我们对多功能酶的理解,并为古菌代谢的进化提供了更多线索。