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Structural and functional characterization of NanU a novel high-affinity sialic acid-inducible binding protein of oral and gut-dwelling Bacteroidetes species

机译:NanU的结构和功能表征一种新型的高亲和力唾液酸诱导的口腔和肠道细菌类细菌的结合蛋白

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摘要

Many human-dwelling bacteria acquire sialic acid for growth or surface display. We identified previously a sialic acid utilization operon in Tannerella forsythia that includes a novel outer membrane sialic acid-transport system (NanOU), where NanO (neuraminate outer membrane permease) is a putative TonB-dependent receptor and NanU (extracellular neuraminate uptake protein) is a predicted SusD family protein. Using heterologous complementation of nanOU genes into an Escherichia coli strain devoid of outer membrane sialic acid permeases, we show that the nanOU system from the gut bacterium Bacteroides fragilis is functional and demonstrate its dependence on TonB for function. We also show that nanU is required for maximal function of the transport system and that it is expressed in a sialic acid-responsive manner. We also show its cellular localization to the outer membrane using fractionation and immunofluorescence experiments. Ligand-binding studies revealed high-affinity binding of sialic acid to NanU (Kd ~400 nM) from two Bacteroidetes species as well as binding of a range of sialic acid analogues. Determination of the crystal structure of NanU revealed a monomeric SusD-like structure containing a novel motif characterized by an extended kinked helix that might determine sugar-binding specificity. The results of the present study characterize the first bacterial extracellular sialic acid-binding protein and define a sialic acid-specific PUL (polysaccharide utilization locus).
机译:许多人类居住的细菌需要唾液酸来生长或表面展示。我们以前在坦氏菌连翘中鉴定了一个唾液酸利用操纵子,该操纵子包括一个新颖的外膜唾液酸转运系统(NanOU),其中NanO(神经氨酸外膜通透酶)是一个假定的TonB依赖受体,而NanU(细胞外神经氨酸摄取蛋白)是预测的SusD家族蛋白。使用nanOU基因到没有外膜唾液酸通透酶的大肠杆菌菌株中的异源互补,我们显示肠道细菌脆弱拟杆菌(Bacteroides fragilis)的nanOU系统具有功能,并证明其对TonB的功能依赖性。我们还表明,nanU是运输系统最大功能所必需的,并且它以唾液酸响应方式表达。我们还显示了使用分级分离和免疫荧光实验将其细胞定位于外膜。配体结合研究揭示了唾液酸与两种拟杆菌属物种NanU(Kd〜400 nM)的高亲和力结合以及一系列唾液酸类似物的结合。 NanU晶体结构的确定揭示了一个单体SusD样结构,其中包含一个新颖的基序,其特征是可能会确定糖结合特异性的延伸的扭曲螺旋。本研究的结果表征了第一个细菌细胞外唾液酸结合蛋白,并定义了唾液酸特异性PUL(多糖利用位点)。

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