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鉴定细菌吡啶核苷酸循环中的烟酰胺单核苷酸脱氨酶揭示了一种新型广泛保守的酰胺水解酶家族。

Identification of nicotinamide mononucleotide deamidase of the bacterial pyridine nucleotide cycle reveals a novel broadly conserved amidohydrolase family.

机构信息

Department of Molecular Pathology and Innovative Therapies, Section of Biochemistry, Università Politecnica delle Marche, Ancona 60131, Italy.

出版信息

J Biol Chem. 2011 Nov 18;286(46):40365-75. doi: 10.1074/jbc.M111.275818. Epub 2011 Sep 27.

Abstract

The pyridine nucleotide cycle is a network of salvage and recycling routes maintaining homeostasis of NAD(P) cofactor pool in the cell. Nicotinamide mononucleotide (NMN) deamidase (EC 3.5.1.42), one of the key enzymes of the bacterial pyridine nucleotide cycle, was originally described in Enterobacteria, but the corresponding gene eluded identification for over 30 years. A genomics-based reconstruction of NAD metabolism across hundreds of bacterial species suggested that NMN deamidase reaction is the only possible way of nicotinamide salvage in the marine bacterium Shewanella oneidensis. This prediction was verified via purification of native NMN deamidase from S. oneidensis followed by the identification of the respective gene, termed pncC. Enzymatic characterization of the PncC protein, as well as phenotype analysis of deletion mutants, confirmed its proposed biochemical and physiological function in S. oneidensis. Of the three PncC homologs present in Escherichia coli, NMN deamidase activity was confirmed only for the recombinant purified product of the ygaD gene. A comparative analysis at the level of sequence and three-dimensional structure, which is available for one of the PncC family member, shows no homology with any previously described amidohydrolases. Multiple alignment analysis of functional and nonfunctional PncC homologs, together with NMN docking experiments, allowed us to tentatively identify the active site area and conserved residues therein. An observed broad phylogenomic distribution of predicted functional PncCs in the bacterial kingdom is consistent with a possible role in detoxification of NMN, resulting from NAD utilization by DNA ligase.

摘要

吡啶核苷酸循环是一个挽救和回收途径的网络,用于维持细胞内 NAD(P) 辅酶池的内稳态。烟酰胺单核苷酸 (NMN) 脱酰胺酶 (EC 3.5.1.42) 是细菌吡啶核苷酸循环的关键酶之一,最初在肠杆菌中被描述,但相应的基因在 30 多年来一直未被识别。基于基因组学的数百种细菌物种的 NAD 代谢重建表明,NMN 脱酰胺酶反应是海洋细菌希瓦氏菌中烟酰胺挽救的唯一可能途径。这一预测通过从希瓦氏菌中纯化天然 NMN 脱酰胺酶并鉴定相应的基因 pncC 得到了验证。对 PncC 蛋白的酶学特性以及缺失突变体的表型分析证实了其在希瓦氏菌中的生化和生理功能。在大肠杆菌中存在的三个 PncC 同源物中,只有 ygaD 基因的重组纯化产物证实具有 NMN 脱酰胺酶活性。序列和三维结构的比较分析,其中一个 PncC 家族成员可用,与以前描述的任何酰胺水解酶均无同源性。功能和非功能 PncC 同源物的多重比对分析以及 NMN 对接实验使我们能够初步确定活性位点区域及其内的保守残基。在细菌王国中,预测具有功能的 PncC 的广泛系统发生分布与 NMN 的解毒作用一致,这是由 DNA 连接酶利用 NAD 引起的。

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