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多毛纲小头虫中的细胞色素P450超家族补体(CYPome)

The Cytochrome P450 superfamily complement (CYPome) in the annelid Capitella teleta.

作者信息

Dejong Chris A, Wilson Joanna Y

机构信息

Department of Biology, McMaster University, Hamilton, Ontario, Canada.

出版信息

PLoS One. 2014 Nov 12;9(11):e107728. doi: 10.1371/journal.pone.0107728. eCollection 2014.

Abstract

The Cytochrome P450 super family (CYP) is responsible for a wide range of functions in metazoans, having roles in both exogenous and endogenous substrate metabolism. Annelids are known to metabolize polycyclic aromatic hydrocarbons (PAHs) and produce estrogen. CYPs are postulated to be key enzymes in these processes in annelids. In this study, the CYP complement (CYPome) of the annelid Capitella teleta has been robustly identified and annotated with the genome assembly available. Phylogenetic analyses were performed to understand the evolutionary relationships between CYPs in C. teleta and other species. Predictions of which CYPs are potentially involved in both PAH metabolism and steroidogensis were made based on phylogeny. Annotation of 84 full length and 12 partial CYP sequences predicted a total of 96 functional CYPs in C. teleta. A further 13 CYP fragments were found but these may be pseudogenes. The C. teleta CYPome contained 24 novel CYP families and seven novel CYP subfamilies within existing families. A phylogenetic analysis identified that the C. teleta sequences were found in 9 of the 11 metazoan CYP clans. Two CYPs, CYP3071A1 and CYP3072A1, did not cluster with any metazoan CYP clans. We found xenobiotic response elements (XREs) upstream of C. teleta CYPs related to vertebrate CYP1 (CYP3060A1, CYP3061A1) and from families with reported transcriptional upregulation in response to PAH exposure (CYP4, CYP331). C. teleta had a CYP51A1 with ∼65% identity to vertebrate CYP51A1 sequences and has been predicted to have lanosterol 14 α-demethylase activity. CYP376A1, CYP3068A1, CYP3069A1, and CYP3070A1 were the most appropriate candidates for steroidogenesis genes based on their phylogeny and warrant further analyses, though no specific aromatase (estrogen synthesis) candidates were found. Presence of XREs upstream of C. teleta CYPs may indicate a functional aryl hydrocarbon receptor in C. teleta and candidate CYPs for studies of PAH metabolism.

摘要

细胞色素P450超家族(CYP)在后生动物中负责多种功能,在外源和内源性底物代谢中均发挥作用。已知环节动物能代谢多环芳烃(PAHs)并产生雌激素。细胞色素P450被推测为环节动物这些过程中的关键酶。在本研究中,利用现有的基因组组装数据,对环节动物小头虫(Capitella teleta)的细胞色素P450基因库(CYPome)进行了全面鉴定和注释。进行了系统发育分析,以了解小头虫中的细胞色素P450与其他物种之间的进化关系。基于系统发育情况,预测了哪些细胞色素P450可能参与多环芳烃代谢和类固醇生成。对84个全长和12个部分细胞色素P450序列的注释预测小头虫共有96个功能性细胞色素P450。还发现了另外13个细胞色素P450片段,但这些可能是假基因。小头虫的细胞色素P450基因库在现有家族中包含24个新的细胞色素P450家族和7个新的细胞色素P450亚家族。系统发育分析表明,小头虫的序列存在于11个后生动物细胞色素P450家族中的9个家族中。两个细胞色素P450,CYP3071A1和CYP3072A1,未与任何后生动物细胞色素P450家族聚类。我们在小头虫细胞色素P450上游发现了与脊椎动物细胞色素P450 1(CYP3060A1、CYP3061A1)相关的外源物反应元件(XREs),以及在暴露于多环芳烃时转录上调的家族(CYP4、CYP331)中的元件。小头虫有一个细胞色素P450 51A1,与脊椎动物细胞色素P450 51A1序列有~65%的同源性,预计具有羊毛甾醇14α-脱甲基酶活性。基于系统发育情况,CYP376A1、CYP3068A1、CYP3069A1和CYP3070A1是类固醇生成基因的最合适候选基因,值得进一步分析,不过未发现特定的芳香化酶(雌激素合成)候选基因。小头虫细胞色素P450上游存在外源物反应元件可能表明小头虫中存在功能性芳烃受体以及用于多环芳烃代谢研究的候选细胞色素P450。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6d3/4229089/9f2f8f3a4f66/pone.0107728.g002.jpg

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