小鼠和人类基因组中细胞色素P450 (CYP)基因的比较,包括基因、假基因和选择性剪接变体的命名建议。

David R Nelson, Darryl C Zeldin, Susan M G Hoffman, Lois J Maltais, Hester M Wain, Daniel W Nebert
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引用次数: 998

摘要

目的:在私营和公共部门完成小鼠和人类基因组序列,促使两个物种在多个层面上进行比较。本文综述了细胞色素P450 (CYP)基因超家族的研究进展。这是我们第一次有能力比较两种哺乳动物的完整CYP基因。将小鼠作为哺乳动物模型和人类生物学的替代品,假设两者之间存在合理的相似性。因此,对遗传相似性和差异进行分类,并澄清从小鼠到人类的外推的局限性,是很有意义的。方法:采用数据挖掘方法对小鼠和人的CYP序列进行检索;这包括102个小鼠的推定功能基因和88个假基因,以及57个人类的推定功能基因和58个假基因。对所有这些基因进行了比较,特别是七个主要的CYP基因簇。结果和结论:7个CYP簇在小鼠中有72个功能基因,而在人类中只有27个;据推测,这种现象将在许多其他基因超家族集群中出现。所有假基因序列的完全鉴定可能具有重要的临床意义,因为其中一些高度相似的外显子会干扰基于pcr的基因分型分析。提出了四类CYP伪基因的命名程序,我们鼓励各种基因命名委员会认真考虑采用和应用这一伪基因命名系统。
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Comparison of cytochrome P450 (CYP) genes from the mouse and human genomes, including nomenclature recommendations for genes, pseudogenes and alternative-splice variants.

Objectives: Completion of both the mouse and human genome sequences in the private and public sectors has prompted comparison between the two species at multiple levels. This review summarizes the cytochrome P450 (CYP) gene superfamily. For the first time, we have the ability to compare complete sets of CYP genes from two mammals. Use of the mouse as a model mammal, and as a surrogate for human biology, assumes reasonable similarity between the two. It is therefore of interest to catalog the genetic similarities and differences, and to clarify the limits of extrapolation from mouse to human.

Methods: Data-mining methods have been used to find all the mouse and human CYP sequences; this includes 102 putatively functional genes and 88 pseudogenes in the mouse, and 57 putatively functional genes and 58 pseudogenes in the human. Comparison is made between all these genes, especially the seven main CYP gene clusters.

Results and conclusions: The seven CYP clusters are greatly expanded in the mouse with 72 functional genes versus only 27 in the human, while many pseudogenes are present; presumably this phenomenon will be seen in many other gene superfamily clusters. Complete identification of all pseudogene sequences is likely to be clinically important, because some of these highly similar exons can interfere with PCR-based genotyping assays. A naming procedure for each of four categories of CYP pseudogenes is proposed, and we encourage various gene nomenclature committees to consider seriously the adoption and application of this pseudogene nomenclature system.

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