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Structural and enzymatic characterization of NanS (YjhS), a 9-O-Acetyl N-acetylneuraminic acid esterase from Escherichia coli O157:H7

机译:NanS(YjhS),一种来自大肠杆菌O157:H7的9-O-乙酰N-乙酰神经氨酸酯酶的结构和酶学表征

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摘要

There is a high prevalence of sialic acid in a number of different organisms, resulting in there being a myriad of different enzymes that can exploit it as a fermentable carbon source. One such enzyme is NanS, a carbohydrate esterase that we show here deacetylates the 9 position of 9-O-sialic acid so that it can be readily transported into the cell for catabolism. Through structural studies, we show that NanS adopts a SGNH hydrolase fold. Although the backbone of the structure is similar to previously characterized family members, sequence comparisons indicate that this family can be further subdivided into two subfamilies with somewhat different fingerprints. NanS is the founding member of group II. Its catalytic center contains Ser19 and His301 but no Asp/Glu is present to form the classical catalytic triad. The contribution of Ser19 and His301 to catalysis was confirmed by mutagenesis. In addition to structural characterization, we have mapped the specificity of NanS using a battery of substrates.
机译:唾液酸在许多不同的生物中普遍存在,导致存在无数种可以将其用作可发酵碳源的不同酶。一种这样的酶是NanS,它是一种碳水化合物酯酶,在这里我们显示出它可使9-O-唾液酸的9位脱乙酰化,因此可以很容易地转运到细胞中进行分解代谢。通过结构研究,我们显示NanS采用SGNH水解酶折叠。尽管该结构的骨架与先前表征的家族成员相似,但序列比较表明该家族可以进一步细分为两个指纹有些不同的亚家族。 NanS是II组的创始成员。它的催化中心包含Ser19和His301,但没有Asp / Glu形成经典的催化三联体。诱变证实了Ser19和His301对催化的贡献。除了结构表征外,我们还使用一系列底物绘制了NanS的特异性。

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