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在多毛纲小头虫(Capitella capitata sp.I)中两个属于CYP4和新的CYP331家族的新型细胞色素P450基因的鉴定与表达。

Identification and expression of two novel cytochrome P450 genes, belonging to CYP4 and a new CYP331 family, in the polychaete Capitella capitata sp.I.

作者信息

Li Bo, Bisgaard Hanne Cathrine, Forbes Valery E

机构信息

Department of Life Sciences and Chemistry, Roskilde University, DK-4000 Roskilde, Denmark.

出版信息

Biochem Biophys Res Commun. 2004 Dec 10;325(2):510-7. doi: 10.1016/j.bbrc.2004.10.066.

Abstract

The polychaete Capitella capitata sp.I has a high capacity to metabolize polycyclic aromatic hydrocarbons (PAHs) which are among the most hazardous environmental pollutants with significant biological effects. In the present study, two novel cytochrome P450 (CYP) genes were identified in this species. One was named CYP331A1, the first member of a new family of CYP331, and the other CYP4AT1 is the first member of a new subfamily CYP4AT. Both of these genes are constitutively expressed in the worms and detectable by RT-PCR. The expression of CYP331A1 mRNA was observed to be more sensitive to PAH exposure than CYP4AT1, which indicated that CYP331A1 should play a more important role than CYP4AT1 in PAH metabolism in this species. Considering the importance of C. capitata sp.I in taking up PAH and other organic pollutants from contaminated marine sediments with the potential for subsequent food-chain transfer, our results are important for understanding the molecular basis of biotransformation and detoxification in this invertebrate, and also have evolutionary significance for understanding the diversity and history of the CYP superfamily.

摘要

多毛纲小头虫 Capitella capitata sp.I 具有高代谢多环芳烃(PAHs)的能力,多环芳烃是最具危害性的环境污染物之一,具有显著的生物学效应。在本研究中,在该物种中鉴定出两个新的细胞色素 P450(CYP)基因。一个被命名为 CYP331A1,是 CYP331 新家族的首个成员,另一个 CYP4AT1 是 CYP4AT 新亚家族的首个成员。这两个基因在蠕虫中均组成性表达,可通过 RT-PCR 检测到。观察到 CYP331A1 mRNA 的表达对 PAH 暴露比 CYP4AT1 更敏感,这表明在该物种的 PAH 代谢中,CYP331A1 应比 CYP4AT1 发挥更重要的作用。鉴于 Capitella capitata sp.I 在从受污染的海洋沉积物中摄取 PAH 和其他有机污染物并随后进行食物链转移方面的重要性,我们的结果对于理解这种无脊椎动物生物转化和解毒的分子基础很重要,并且对于理解 CYP 超家族的多样性和进化史也具有重要意义。

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