Department of Biochemistry and Microbiology, Faculty of Science and Agriculture, University of Zululand, KwaDlangezwa 3886, South Africa.
Department of Pharmaceutical Chemistry, College of Health Sciences, University of KwaZulu-Natal, Durban 4000, South Africa.
Molecules. 2021 Mar 11;26(6):1538. doi: 10.3390/molecules26061538.
The impact of lifestyle on shaping the genome content of an organism is a well-known phenomenon and cytochrome P450 enzymes (CYPs/P450s), heme-thiolate proteins that are ubiquitously present in organisms, are no exception. Recent studies focusing on a few bacterial species such as , , and revealed that the impact of lifestyle affected the P450 repertoire in these species. However, this phenomenon needs to be understood in other bacterial species. We therefore performed genome data mining, annotation, phylogenetic analysis of P450s and their role in secondary metabolism in the bacterial class . Genome-wide data mining for P450s in 1261 Gammaproteobacterial species belonging to 161 genera revealed that only 169 species belonging to 41 genera have P450s. A total of 277 P450s found in 169 species grouped into 84 P450 families and 105 P450 subfamilies, where 38 new P450 families were found. Only 18% of P450s were found to be involved in secondary metabolism in Gammaproteobacterial species, as observed in as well. The pathogenic or commensal lifestyle of Gammaproteobacterial species influences them to such an extent that they have the lowest number of P450s compared to other bacterial species, indicating the impact of lifestyle on shaping the P450 repertoire. This study is the first report on comprehensive analysis of P450s in .
生活方式对生物体基因组内容的影响是一个众所周知的现象,细胞色素 P450 酶(CYPs/P450s)作为普遍存在于生物体中的血红素硫醇蛋白也不例外。最近的研究集中在少数几种细菌,如 、 、 和 ,揭示了生活方式的影响改变了这些物种中的 P450 组成。然而,这种现象需要在其他细菌物种中得到理解。因此,我们进行了基因组数据挖掘、注释、P450 的系统发育分析及其在细菌纲 中的次生代谢作用。对属于 161 属的 1261 种γ变形菌属物种的全基因组 P450 进行了数据挖掘,结果表明只有 169 种属于 41 个属的物种具有 P450。在 169 个物种中发现的总共 277 个 P450 分为 84 个 P450 家族和 105 个 P450 亚家族,其中发现了 38 个新的 P450 家族。只有 18%的 P450 被发现参与γ变形菌属物种的次生代谢,在 中也观察到了同样的情况。γ变形菌属物种的致病性或共生生活方式对它们的影响如此之大,以至于与其他细菌物种相比,它们的 P450 数量最少,这表明生活方式对 P450 组成的影响。本研究是对 中 P450 进行全面分析的首次报道。