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大肠杆菌K1和K92多聚唾液酸转移酶之间的同源性。

Homology among Escherichia coli K1 and K92 polysialytransferases.

作者信息

Vimr E R, Bergstrom R, Steenbergen S M, Boulnois G, Roberts I

机构信息

Department of Pathobiology, College of Veterinary Medicine, University of Illinois, Urbana 61801.

出版信息

J Bacteriol. 1992 Aug;174(15):5127-31. doi: 10.1128/jb.174.15.5127-5131.1992.

Abstract

The neuS-encoded polysialytransferase (polyST) in Escherichia coli K1 catalyzes synthesis of polysialic acid homopolymers composed of unbranched sialyl alpha 2,8 linkages. Subcloning and complementation experiments showed that the K1 neuS was functionally interchangeable with the neuS from E. coli K92 (S. M. Steenbergen, T. J. Wrona, and E. R. Vimr, J. Bacteriol. 174:1099-1108, 1992), which synthesizes polysialic acid capsules with alternating sialyl alpha 2,8-2,9 linkages. To better understand the relationship between these polySTs, the complete K92 neuS sequence was determined. The results demonstrated that K1 and K92 neuS genes are homologous and indicated that the K92 copy may have evolved from its K1 homolog. Both K1 and K92 structural genes comprised 1,227 bp. There were 156 (12.7%) differences between the two sequences; among these mutations, 55 did not affect the derived primary structure of K92 polyST and hence were synonymous with the K1 sequence. Assuming maximum parsimony, another estimated 17 synonymous mutations plus 84 nonsynonymous mutations could account for the 70 amino acid replacements in K92 polyST; 36 of these replacements were judged to be conservative when compared with those of K1 polyST. There were no changes detected in the first 146 5' or last 129 3' bp of either gene, suggesting, in addition to the observed mutational differences, the possibility of a past recombination event between neuS loci of two different kps clusters. The results indicate that relatively few amino acid changes can account for the evolution of a glycosyltransferase with novel linkage specificity.

摘要

大肠杆菌K1中neuS编码的多聚唾液酸转移酶(polyST)催化由无分支的唾液酸α2,8连接组成的多聚唾液酸同聚物的合成。亚克隆和互补实验表明,K1的neuS与大肠杆菌K92的neuS在功能上可互换(S.M. Steenbergen、T.J. Wrona和E.R. Vimr,《细菌学杂志》174:1099 - 1108,1992年),后者合成具有交替唾液酸α2,8 - 2,9连接的多聚唾液酸荚膜。为了更好地理解这些多聚唾液酸转移酶之间的关系,测定了完整的K92 neuS序列。结果表明K1和K92的neuS基因是同源的,并且表明K92的拷贝可能是从其K1同源物进化而来的。K1和K92的结构基因均由1227个碱基对组成。这两个序列之间有156个(12.7%)差异;在这些突变中,55个不影响K92多聚唾液酸转移酶的推导一级结构,因此与K1序列同义。假设最大简约性,另外估计的17个同义突变加上84个非同义突变可以解释K92多聚唾液酸转移酶中的70个氨基酸替换;与K1多聚唾液酸转移酶相比,其中36个替换被判定为保守的。在任何一个基因的前146个5'或后129个3'碱基对中未检测到变化,这表明除了观察到的突变差异外,两个不同kps簇的neuS位点之间过去可能发生了重组事件。结果表明,相对较少的氨基酸变化可以解释具有新连接特异性的糖基转移酶的进化。

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