Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA, USA.
BMC Genomics. 2010 Nov 18;11:643. doi: 10.1186/1471-2164-11-643.
Increasing use of zebrafish in drug discovery and mechanistic toxicology demands knowledge of cytochrome P450 (CYP) gene regulation and function. CYP enzymes catalyze oxidative transformation leading to activation or inactivation of many endogenous and exogenous chemicals, with consequences for normal physiology and disease processes. Many CYPs potentially have roles in developmental specification, and many chemicals that cause developmental abnormalities are substrates for CYPs. Here we identify and annotate the full suite of CYP genes in zebrafish, compare these to the human CYP gene complement, and determine the expression of CYP genes during normal development.
Zebrafish have a total of 94 CYP genes, distributed among 18 gene families found also in mammals. There are 32 genes in CYP families 5 to 51, most of which are direct orthologs of human CYPs that are involved in endogenous functions including synthesis or inactivation of regulatory molecules. The high degree of sequence similarity suggests conservation of enzyme activities for these CYPs, confirmed in reports for some steroidogenic enzymes (e.g. CYP19, aromatase; CYP11A, P450scc; CYP17, steroid 17a-hydroxylase), and the CYP26 retinoic acid hydroxylases. Complexity is much greater in gene families 1, 2, and 3, which include CYPs prominent in metabolism of drugs and pollutants, as well as of endogenous substrates. There are orthologous relationships for some CYP1 s and some CYP3 s between zebrafish and human. In contrast, zebrafish have 47 CYP2 genes, compared to 16 in human, with only two (CYP2R1 and CYP2U1) recognized as orthologous based on sequence. Analysis of shared synteny identified CYP2 gene clusters evolutionarily related to mammalian CYP2 s, as well as unique clusters.
Transcript profiling by microarray and quantitative PCR revealed that the majority of zebrafish CYP genes are expressed in embryos, with waves of expression of different sets of genes over the course of development. Transcripts of some CYP occur also in oocytes. The results provide a foundation for the use of zebrafish as a model in toxicological, pharmacological and chemical disease research.
在药物发现和机制毒理学中越来越多地使用斑马鱼,这就需要了解细胞色素 P450(CYP)基因的调控和功能。CYP 酶催化氧化转化,导致许多内源性和外源性化学物质的激活或失活,从而对正常生理和疾病过程产生影响。许多 CYP 可能在发育特化中发挥作用,许多导致发育异常的化学物质是 CYP 的底物。在这里,我们鉴定并注释了斑马鱼中全套的 CYP 基因,将这些基因与人类 CYP 基因进行了比较,并确定了 CYP 基因在正常发育过程中的表达。
斑马鱼共有 94 个 CYP 基因,分布在哺乳动物中也发现的 18 个基因家族中。CYP 家族 5 到 51 中有 32 个基因,其中大多数是参与内源性功能(包括调节分子的合成或失活)的人类 CYP 的直接直系同源物。高度的序列相似性表明这些 CYP 的酶活性得到了保守,这在一些类固醇生成酶(例如 CYP19、芳香酶;CYP11A、P450scc;CYP17、类固醇 17a-羟化酶)和 CYP26 视黄酸羟化酶的报告中得到了证实。基因家族 1、2 和 3 中的复杂性要大得多,其中包括在药物和污染物代谢以及内源性底物代谢中突出的 CYP。斑马鱼和人类之间存在一些 CYP1 和一些 CYP3 的直系同源关系。相比之下,斑马鱼有 47 个 CYP2 基因,而人类只有 16 个,只有两个(CYP2R1 和 CYP2U1)基于序列被认为是直系同源物。共享同线性分析鉴定出与哺乳动物 CYP2s 进化相关的 CYP2 基因簇,以及独特的簇。
通过微阵列和定量 PCR 进行的转录谱分析表明,大多数斑马鱼 CYP 基因在胚胎中表达,在发育过程中不同组的基因表达呈现波浪式。一些 CYP 的转录本也存在于卵母细胞中。这些结果为将斑马鱼用作毒理学、药理学和化学疾病研究的模型提供了基础。