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来自脑膜炎奈瑟菌C群的多唾液酸特异性O-乙酰基转移酶OatC是从其他细菌唾液酸O-乙酰基转移酶中分化出来的。

The polysialic acid-specific O-acetyltransferase OatC from Neisseria meningitidis serogroup C evolved apart from other bacterial sialate O-acetyltransferases.

作者信息

Bergfeld Anne K, Claus Heike, Lorenzen Nina K, Spielmann Fabian, Vogel Ulrich, Mu Hlenhoff Martina

机构信息

Department of Cellular Chemistry, Medical School Hannover, 30623 Hannover, Germany and the Institute for Hygiene and Microbiology, University of Wu¨rzburg, 97080 Wu¨rzburg, Germany.

Department of Cellular Chemistry, Medical School Hannover, 30623 Hannover, Germany and the Institute for Hygiene and Microbiology, University of Wu¨rzburg, 97080 Wu¨rzburg, Germany.

出版信息

J Biol Chem. 2009 Jan 2;284(1):6-16. doi: 10.1074/jbc.M807518200. Epub 2008 Nov 5.

DOI:10.1074/jbc.M807518200
PMID:18986988
Abstract

Neisseria meningitidis serogroup C is a major cause of bacterial meningitis and septicaemia. This human pathogen is protected by a capsule composed of alpha2,9-linked polysialic acid that represents an important virulence factor. In the majority of strains, the capsular polysaccharide is modified by O-acetylation at C-7 or C-8 of the sialic acid residues. The gene encoding the capsule modifying O-acetyltransferase is part of the capsule gene complex and shares no sequence similarities with other proteins. Here, we describe the purification and biochemical characterization of recombinant OatC. The enzyme was found as a homodimer, with the first 34 amino acids forming an efficient oligomerization domain that worked even in a different protein context. Using acetyl-CoA as donor substrate, OatC transferred acetyl groups exclusively onto polysialic acid joined by alpha2,9-linkages and did not act on free or CMP-activated sialic acid. Motif scanning revealed a nucleophile elbow motif (GXS286XGG), which is a hallmark of alpha/beta-hydrolase fold enzymes. In a comprehensive site-directed mutagenesis study, we identified a catalytic triad composed of Ser-286, Asp-376, and His-399. Consistent with a double-displacement mechanism common to alpha/beta-hydrolase fold enzymes, a covalent acetylenzyme intermediate was found. Together with secondary structure prediction highlighting an alpha/beta-hydrolase fold topology, our data provide strong evidence that OatC belongs to the alpha/beta-hydrolase fold family. This clearly distinguishes OatC from all other bacterial sialate O-acetyltransferases known so far because these are members of the hexapeptide repeat family, a class of acyltransferases that adopt a left-handed beta-helix fold and assemble into catalytic trimers.

摘要

C群脑膜炎奈瑟菌是细菌性脑膜炎和败血症的主要病因。这种人类病原体受到由α2,9-连接的聚唾液酸组成的荚膜保护,该荚膜是一种重要的毒力因子。在大多数菌株中,荚膜多糖在唾液酸残基的C-7或C-8位被O-乙酰化修饰。编码荚膜修饰O-乙酰转移酶的基因是荚膜基因复合体的一部分,与其他蛋白质没有序列相似性。在这里,我们描述了重组OatC的纯化和生化特性。该酶被发现是一个同型二聚体,前34个氨基酸形成一个有效的寡聚化结构域,即使在不同的蛋白质环境中也能起作用。以乙酰辅酶A作为供体底物,OatC仅将乙酰基转移到通过α2,9-连接相连的聚唾液酸上,而不作用于游离的或CMP激活的唾液酸。基序扫描揭示了一个亲核肘部基序(GXS286XGG),这是α/β-水解酶折叠酶的一个标志。在一项全面的定点诱变研究中,我们鉴定出一个由Ser-286、Asp-376和His-399组成催化三联体。与α/β-水解酶折叠酶常见的双取代机制一致,发现了一种共价乙酰化酶中间体。结合突出α/β-水解酶折叠拓扑结构的二级结构预测,我们的数据提供了强有力的证据表明OatC属于α/β-水解酶折叠家族。这清楚地将OatC与迄今为止已知的所有其他细菌唾液酸O-乙酰转移酶区分开来,因为这些是六肽重复家族的成员,这是一类采用左手β-螺旋折叠并组装成催化三聚体的酰基转移酶。

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