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首页> 外文期刊>The Biochemical Journal >Characterization of a sialate-O-acetylesterase (NanS) from the oral pathogen Tannerella forsythia that enhances sialic acid release by NanH, its cognate sialidase
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Characterization of a sialate-O-acetylesterase (NanS) from the oral pathogen Tannerella forsythia that enhances sialic acid release by NanH, its cognate sialidase

机译:来自口服病原体育病毒菌菌的唾液酸乙酰酯酶(NANS)的表征增强了纳米酸释放的唾液酸释放,其同源唾液酸酶

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摘要

Tannerella forsythia, a Gram-negative member of the Bacteroidetes has evolved to harvest and utilize sialic acid. The most common sialic acid in humans is a mono-N-acetylated version termed Neu5Ac (5-N-acetyl-neuraminic acid). Many bacteria are known to access sialic acid using sialidase enzymes. However, in humans a high proportion of sialic acid contains a second acetyl group attached via an O-group, i.e. chiefly O-acetylated Neu5,9Ac2 or Neu5,4Ac2. This diacetylated sialic acid is not cleaved efficiently by many sialidases and in order to access diacetylated sialic acid, some organisms produce sialate-O-acetylesterases that catalyse the removal of the second acetyl group. In the present study, we performed bioinformatic and biochemical characterization of a putative sialate-O-acetylesterase from T. forsythia (NanS), which contains two putative SGNH-hydrolase domains related to sialate-O-acetylesterases from a range of organisms. Purification of recombinant NanS revealed an esterase that has activity against Neu5,9Ac2 and its glycolyl form Neu5Gc, 9Ac. Importantly, the enzyme did not remove acetyl groups positioned at the 4-O position (Neu5,4Ac2). In addition NanS can act upon complex N-glycans released from a glycoprotein [erythropoietin (EPO)], bovine submaxillary mucin and oral epithelial cell-bound glycans. When incubated with its cognate sialidase, NanS increased sialic acid release from mucin and oral epithelial cell surfaces, implying that this esterase improves sialic acid harvesting for this pathogen and potentially other members of the oral microbiome. In summary, we have characterized a novel sialate-O-acetylesterase that contributes to the sialobiology of this important human pathogen and has potential applications in the analysis of sialic acid diacetylation of biologics in the pharmaceutical industry.
机译:Tannerella连翘,Bacteroidetes的革兰氏阴性成员已经进化到收获并利用唾液酸。人类中最常见的唾液酸是Neu5Ac(5-乙酰基 - 神经碱酸)称为单对乙酰化版本。已知许多细菌使用唾液酸酶进入唾液酸。然而,在人体中,高比例的唾液酸含有通过O-G基团连接的第二乙酰基,即主要是O-乙酰化Neu5,9Ac2或Neu5,4ac2。这种二乙酰化唾液酸不受许多唾液酸酶有效地切割,并且为了进入二乙酰化唾液酸,一些生物产生催化第二乙酰基的除去的唾液酸-O-乙酰酯酶。在本研究中,我们对来自T.连翘(NANS)的推定的唾液酸盐-O-乙酰酯酶进行生物信息和生化表征,其含有与来自一系列生物的唾液酸乙酰酯酶有关的两个推定的SGNH-水解酶结构域。重组NAN的纯化揭示了一种酯酶,其具有针对Neu5,9Ac2的活性及其糖基形式Neu5GC,9Ac。重要的是,酶没有除去位于4-O位置(Neu5,4ac2)的乙酰基。此外,NAN可以作用于从糖蛋白[促红细胞生成素(EPO)],牛亚昔粒粘蛋白和口腔上皮细胞结合的聚糖释放的复合N-聚糖。当与其同源唾液酸酶孵育时,氮素从粘蛋白和口腔上皮细胞表面增加唾液酸释放,这意味着该酯酶改善了该病原体的唾液酸,并且可能是口腔微生物组的其他成员。总之,我们表征了一种新的唾液酸乙酰酯酶,其有助于这种重要人类病原体的唾液生理学,并具有潜在的应用在药物工业中生物学的唾液酸二乙酰化。

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