Liu Jing, Mushegian Arcady
Stowers Institute for Medical Research, 1000 E. 50th Street, Kansas City, MO 64110, USA.
Protein Sci. 2003 Jul;12(7):1418-31. doi: 10.1110/ps.0302103.
Sixty-five families of glycosyltransferases (EC 2.4.x.y) have been recognized on the basis of high-sequence similarity to a founding member with experimentally demonstrated enzymatic activity. Although distant sequence relationships between some of these families have been reported, the natural history of glycosyltransferases is poorly understood. We used iterative searches of sequence databases, motif extraction, structural comparison, and analysis of completely sequenced genomes to track the origins of modern-type glycosyltransferases. We show that >75% of recognized glycosyltransferase families belong to one of only three monophyletic superfamilies of proteins, namely, (1) a recently described GPGTF/GT-B superfamily; (2) a nucleoside-diphosphosugar transferase (GT-A) superfamily, which is characterized by a DxD sequence signature and also includes nucleotidyltransferases; and (3) a GT-C superfamily of integral membrane glycosyltransferases with a modified DxD signature in the first extracellular loop. Several developmental regulators in Metazoans, including Fringe and Egghead homologs, belong to the second superfamily. Interestingly, Tout-velu/Exostosin family of developmental proteins found in all multicellular eukaryotes, contains separate domains belonging to the first and the second superfamilies, explaining multiple glycosyltransferase activities in one protein.
基于与具有实验证明酶活性的创始成员的高度序列相似性,已识别出65个糖基转移酶家族(EC 2.4.x.y)。尽管已报道了其中一些家族之间的远缘序列关系,但对糖基转移酶的自然历史了解甚少。我们使用序列数据库的迭代搜索、基序提取、结构比较和对完全测序基因组的分析来追踪现代型糖基转移酶的起源。我们表明,超过75%的已识别糖基转移酶家族属于仅有的三个单系蛋白质超家族之一,即:(1)最近描述的GPGTF/GT-B超家族;(2)核苷二磷酸糖转移酶(GT-A)超家族,其特征是具有DxD序列特征,还包括核苷酸转移酶;以及(3)在第一个细胞外环中具有修饰DxD特征的整合膜糖基转移酶的GT-C超家族。后生动物中的几种发育调节因子,包括边缘蛋白和卵头蛋白同源物,属于第二个超家族。有趣的是,在所有多细胞真核生物中发现的发育蛋白Tout-velu/Exostosin家族包含属于第一个和第二个超家族的不同结构域,解释了一种蛋白质中的多种糖基转移酶活性。