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Biochemical characterization of a new nicotinamidase from an unclassified bacterium thriving in a geothermal water stream microbial mat community

机译:来自地热水流微生物垫群落中未分类细菌的新烟碱酰胺酶的生化特性

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摘要

Nicotinamidases are amidohydrolases that convert nicotinamide into nicotinic acid, contributing to NAD+ homeostasis in most organisms. In order to increase the number of nicotinamidases described to date, this manuscript characterizes a nicotinamidase obtained from a metagenomic library fosmid clone (JFF054_F02) obtained from a geothermal water stream microbial mat community in a Japanese epithermal mine. The enzyme showed an optimum temperature of 90°C, making it the first hyperthermophilic bacterial nicotinamidase to be characterized, since the phylogenetic analysis of this fosmid clone placed it in a clade of uncultured geothermal bacteria. The enzyme, named as UbNic, not only showed an alkaline optimum pH, but also a biphasic pH dependence of its kcat, with a maximum at pH 9.5–10.0. The two pKa values obtained were 4.2 and 8.6 for pKes1 and pKes2, respectively. These results suggest a possible flexible catalytic mechanism for nicotinamidases, which reconciles the two previously proposed mechanisms. In addition, the enzyme showed a high catalytic efficiency, not only toward nicotinamide, but also toward other nicotinamide analogs. Its mutational analysis showed that a tryptophan (W83) is needed in one of the faces of the active site to maintain low Km values toward all the substrates tested. Furthermore, UbNic proved to contain a Fe2+ ion in its metal binding site, and was revealed to belong to a new nicotinamidase subgroup. All these characteristics, together with its high pH- and thermal stability, distinguish UbNic from previously described nicotinamidases, and suggest that a wide diversity of enzymes remains to be discovered in extreme environments.
机译:烟碱酰胺酶是一种酰胺水解酶,可将烟酰胺转化为烟酸,从而在大多数生物中促进NAD + 体内稳态。为了增加迄今描述的烟碱酰胺酶的数量,该手稿表征了从日本超热矿山的地热水流微生物垫群落获得的宏基因组文库fosmid克隆(JFF054_F02)获得的烟碱酰胺酶。该酶显示出90°C的最佳温度,使其成为第一个被表征的超嗜热细菌烟酰胺酰胺酶,因为对这种fosmid克隆的系统发育分析将其置于未培养的地热细菌中。这种名为UbNic的酶不仅显示出碱性最佳pH,而且还显示了其kcat的双相pH依赖性,在pH 9.5-10.0时最大。对于pKes1和pKes2,获得的两个pKa值分别为4.2和8.6。这些结果表明烟碱酰胺酶的可能的灵活催化机制,这协调了以前提出的两个机制。另外,该酶不仅对烟酰胺,而且对其他烟酰胺类似物都显示出高催化效率。其突变分析表明,在活性位点之一的表面需要色氨酸(W83),以保持朝向所有受测底物的低Km值。此外,UbNic被证明在其金属结合位点包含一个Fe 2 + 离子,并被发现属于一个新的烟碱酰胺酶亚组。所有这些特征以及其高的pH值和热稳定性使UbNic与先前描述的烟酰胺酰胺酶区分开来,并表明在极端环境中仍有待发现多种酶。

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