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UDP糖基转移酶基因超家族:基于进化差异的推荐命名更新

The UDP glycosyltransferase gene superfamily: recommended nomenclature update based on evolutionary divergence.

作者信息

Mackenzie P I, Owens I S, Burchell B, Bock K W, Bairoch A, Bélanger A, Fournel-Gigleux S, Green M, Hum D W, Iyanagi T, Lancet D, Louisot P, Magdalou J, Chowdhury J R, Ritter J K, Schachter H, Tephly T R, Tipton K F, Nebert D W

机构信息

Department of Clinical Pharmacology, Flinders University of South Australia, Bedford Park.

出版信息

Pharmacogenetics. 1997 Aug;7(4):255-69. doi: 10.1097/00008571-199708000-00001.

Abstract

This review represents an update of the nomenclature system for the UDP glucuronosyltransferase gene superfamily, which is based on divergent evolution. Since the previous review in 1991, sequences of many related UDP glycosyltransferases from lower organisms have appeared in the database, which expand our database considerably. At latest count, in animals, yeast, plants and bacteria there are 110 distinct cDNAs/genes whose protein products all contain a characteristic 'signature sequence' and, thus, are regarded as members of the same superfamily. Comparison of a relatedness tree of proteins leads to the definition of 33 families. It should be emphasized that at least six cloned UDP-GlcNAc N-acetylglucosaminyltransferases are not sufficiently homologous to be included as members of this superfamily and may represent an example of convergent evolution. For naming each gene, it is recommended that the root symbol UGT for human (Ugt for mouse and Drosophila), denoting 'UDP glycosyltransferase,' be followed by an Arabic number representing the family, a letter designating the subfamily, and an Arabic numeral denoting the individual gene within the family or subfamily, e.g. 'human UGT2B4' and 'mouse Ugt2b5'. We recommend the name 'UDP glycosyltransferase' because many of the proteins do not preferentially use UDP glucuronic acid, or their nucleotide sugar preference is unknown. Whereas the gene is italicized, the corresponding cDNA, transcript, protein and enzyme activity should be written with upper-case letters and without italics, e.g. 'human or mouse UGT1A1.' The UGT1 gene (spanning > 500 kb) contains at least 12 promoters/first exons, which can be spliced and joined with common exons 2 through 5, leading to different N-terminal halves but identical C-terminal halves of the gene products; in this scheme each first exon is regarded as a distinct gene (e.g. UGT1A1, UGT1A2, ... UGT1A12). When an orthologous gene between species cannot be identified with certainty, as occurs in the UGT2B subfamily, sequential naming of the genes is being carried out chronologically as they become characterized. We suggest that the Human Gene Nomenclature Guidelines (http://www.gene.acl.ac.uk/nomenclature/guidelines.html++ +) be used for all species other than the mouse and Drosophila. Thirty published human UGT1A1 mutant alleles responsible for clinical hyperbilirubinemias are listed herein, and given numbers following an asterisk (e.g. UGT1A1*30) consistent with the Human Gene Nomenclature Guidelines. It is anticipated that this UGT gene nomenclature system will require updating on a regular basis.

摘要

本综述是基于趋异进化的尿苷二磷酸葡萄糖醛酸基转移酶(UDP glucuronosyltransferase)基因超家族命名系统的更新。自1991年上次综述以来,数据库中出现了许多来自低等生物的相关UDP糖基转移酶序列,这极大地扩充了我们的数据库。最新统计显示,在动物、酵母、植物和细菌中,有110个不同的cDNA/基因,其蛋白质产物均含有一个特征性的“签名序列”,因此被视为同一超家族的成员。蛋白质亲缘关系树的比较导致了33个家族的定义。应当强调的是,至少有六种克隆的UDP-N-乙酰葡糖胺N-乙酰葡糖胺基转移酶与该超家族成员的同源性不足,可能代表了趋同进化的一个例子。对于每个基因的命名,建议以人类的根符号UGT(小鼠和果蝇为Ugt)表示“UDP糖基转移酶”,后面跟着一个代表家族的阿拉伯数字、一个指定亚家族的字母以及一个表示家族或亚家族内单个基因的阿拉伯数字,例如“人类UGT2B4”和“小鼠Ugt2b5”。我们建议使用“UDP糖基转移酶”这个名称,因为许多蛋白质并不优先使用UDP葡糖醛酸,或者它们对核苷酸糖的偏好未知。基因用斜体表示,而相应的cDNA、转录本、蛋白质和酶活性要用大写字母书写且不用斜体,例如“人类或小鼠UGT1A1”。UGT1基因(跨度>500 kb)至少包含12个启动子/第一个外显子,它们可以与共同外显子2至5进行剪接和连接,导致基因产物的N端不同但C端相同;在这个方案中,每个第一个外显子都被视为一个不同的基因(例如UGT1A1、UGT1A2、……UGT1A12)。当无法确定物种间的直系同源基因时,如在UGT2B亚家族中出现的情况,随着基因被鉴定,将按时间顺序对其进行连续命名。我们建议对小鼠和果蝇以外的所有物种使用《人类基因命名指南》(http://www.gene.acl.ac.uk/nomenclature/guidelines.html++ +)。本文列出了30个导致临床高胆红素血症的已发表的人类UGT1A1突变等位基因,并按照与《人类基因命名指南》一致的方式在星号后给出编号(例如UGT1A1*30)。预计这个UGT基因命名系统将需要定期更新。

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