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On the structure and function of Escherichia coli Escherichia coli YjhC: An oxidoreductase involved in bacterial sialic acid metabolism

机译:大肠杆菌大肠杆菌大肠杆菌yjhc的结构与功能:涉及细菌唾液酸代谢的氧化还原蛋白酶

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Abstract Human pathogenic and commensal bacteria have evolved the ability to scavenge host‐derived sialic acids and subsequently degrade them as a source of nutrition. Expression of the Escherichia coli yjhBC operon is controlled by the repressor protein nanR , which regulates the core machinery responsible for the import and catabolic processing of sialic acid. The role of the yjhBC encoded proteins is not known—here, we demonstrate that the enzyme YjhC is an oxidoreductase/dehydrogenase involved in bacterial sialic acid degradation. First, we demonstrate in vivo using knockout experiments that YjhC is broadly involved in carbohydrate metabolism, including that of N ‐acetyl‐ d ‐glucosamine, N ‐acetyl‐ d ‐galactosamine and N ‐acetylneuraminic acid. Differential scanning fluorimetry demonstrates that YjhC binds N ‐acetylneuraminic acid and its lactone variant, along with NAD(H), which is consistent with its role as an oxidoreductase. Next, we solved the crystal structure of YjhC in complex with the NAD(H) cofactor to 1.35?? resolution. The protein fold belongs to the Gfo/Idh/MocA protein family. The dimeric assembly observed in the crystal form is confirmed through solution studies. Ensemble refinement reveals a flexible loop region that may play a key role during catalysis, providing essential contacts to stabilize the substrate—a unique feature to YjhC among closely related structures. Guided by the structure, in silico docking experiments support the binding of sialic acid and several common derivatives in the binding pocket, which has an overall positive charge distribution. Taken together, our results verify the role of YjhC as a bona fide oxidoreductase/dehydrogenase and provide the first evidence to support its involvement in sialic acid metabolism.
机译:摘要人类致病和非负面细菌已经进化了清除宿主衍生的唾液酸的能力,随后将它们降低为营养来源。大肠杆菌yjhbc操纵子的表达由阻遏蛋白纳米控制,该蛋白纳米调节负责唾液酸的进口和分解代谢加工的核心机械。在此未知YJHBC编码蛋白的作用,我们证明酶YjHC是氧化还原酶/脱氢酶,参与细菌唾液酸降解。首先,我们使用淘汰赛实验在体内展示YJHC广泛参与碳水化合物代谢,包括N-乙酰-d-glucosamine,N-乙酰-d -galactosamine和N-乙酰甘氨酸酸。差分扫描荧光测定法表明YJHC结合N-乙酰甘氨酸酸及其内酯变体以及NAD(H),其与其作为氧化还原酶的作用一致。接下来,我们用NAD(H)辅因子堆满了YJHC的晶体结构至1.35 ??解析度。蛋白质折叠属于GFO / IDH / MOCA蛋白家族。通过溶液研究证实以晶体形式观察到的二聚体组件。 Ensemble改进揭示了一种灵活的循环区域,可以在催化期间发挥关键作用,提供必要的触点,以稳定基板 - 在密切相关的结构中对Yjhc的独特功能。由结构引导,在硅基对接实验中,支持唾液酸和几种常见衍生物在结合口袋中的结合,其具有整体正电荷分布。我们的结果验证了YJHC作为真氧化酶/脱氢酶的作用,并提供了第一种支持其参与唾液酸代谢的证据。

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