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首页> 外文期刊>Journal of Pure & Applied Microbiology >Comparative Genomics and Evolutionary Analysis of Cytochrome P450 Monooxygenases in Fungal Subphylum Saccharomycotina
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Comparative Genomics and Evolutionary Analysis of Cytochrome P450 Monooxygenases in Fungal Subphylum Saccharomycotina

机译:真菌亚门酵母菌中细胞色素P450单加氧酶的比较基因组学和进化分析

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Cytochrome P450 monooxygenases [P450s) are heme-thiolate enzymes and play an important role in the primary and secondary metabolism of living organisms. Genome sequencing analysis of fungal organisms revealed the presence of numerous P450s in their genomes, with few exceptions. P450s in the fungal subphylum Saccharomycotina, which contains biotechnologically important and opportunistic human pathogen yeasts, have been underexplored because there are few P450s in their genomes. In the present study weperformed comparative analysis of P450s in 25 yeast species. A hundred and seventy-two P450s were found in 25 yeast species and these are grouped into 13 P450 families and 27 subfamilies. P450s ranged from a minimum of three (Saccharomyces species) to amaximum of 21 (Candida species] in the yeast genomes. Among the P450 families, the CYP52 family showed the highest number of member P450s (71) followed by CYP51 (27), CYP61 (25), CYP56 (20) and CYP501 (11). Pichia pastoris and Dekkera bruxellensis showed a novel P450 family, CYP5489, in their genome. Based on the functional properties of characterized P450s, we conclude that P450s in Saccharomycotina species possibly play a role in organisms’ physiology either in the synthesis of cellular components or in the utilization of simpler organic molecules. The ecological niches of yeast species are highly enriched with simpler organic nutrients and it is well known that yeast species utilize simpler organic nutrients as carbon source efficiently. This might have played a role in compacting yeast genomes and possibly losing a considerable number of P450s during evolution.
机译:细胞色素P450单加氧酶(P450s)是血红素硫醇酯酶,在生物的初级和次级代谢中起重要作用。真菌生物的基因组测序分析显示,在其基因组中存在许多P450,只有少数例外。由于其基因组中很少有P450,因此真菌生物酵母菌中的P450含有丰富的生物技术上重要的机会性人类病原体酵母,目前尚未得到充分的研究。在本研究中,我们对25种酵母菌中的P450进行了比较分析。在25个酵母物种中发现了172个P450,它们被分为13个P450家族和27个亚家族。在酵母基因组中,P450的范围从最少3个(酵母属)到最大21个(Candida种),在P450家族中,CYP52家族的成员P450家族数量最多(71个),其次是CYP51(27个),CYP61 (25),CYP56(20)和CYP501(11)。Pichia pastoris和Dekkera bruxellensis在其基因组中显示了一个新的P450家族CYP5489,根据已表征的P450的功能特性,我们得出结论,酵母菌中的P450可能扮演着酵母菌的生态位高度富含简单的有机养分,众所周知,酵母菌种可以有效利用简单的有机养分作为碳源,从而在生物生理中发挥重要作用,无论是在合成细胞成分还是在利用简单的有机分子方面。这可能在压缩酵母基因组中发挥了作用,并可能在进化过程中丢失了大量的P450。

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