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三角巧克力折叠酶环酰胺水解酶家族两个功能不同成员的高分辨率X射线结构

High-Resolution X-Ray Structures of Two Functionally Distinct Members of the Cyclic Amide Hydrolase Family of Toblerone Fold Enzymes.

作者信息

Peat Thomas S, Balotra Sahil, Wilding Matthew, Hartley Carol J, Newman Janet, Scott Colin

机构信息

CSIRO Biomedical Manufacturing, Parkville, Victoria, Australia.

Research School of Chemistry, Australian National University, Canberra, Australian Capital Territory, Australia.

出版信息

Appl Environ Microbiol. 2017 Apr 17;83(9). doi: 10.1128/AEM.03365-16. Print 2017 May 1.

Abstract

The Toblerone fold was discovered recently when the first structure of the cyclic amide hydrolase, AtzD (a cyanuric acid hydrolase), was elucidated. We surveyed the cyclic amide hydrolase family, finding a strong correlation between phylogenetic distribution and specificity for either cyanuric acid or barbituric acid. One of six classes (IV) could not be tested due to a lack of expression of the proteins from it, and another class (V) had neither cyanuric acid nor barbituric acid hydrolase activity. High-resolution X-ray structures were obtained for a class VI barbituric acid hydrolase (1.7 Å) from a species and a class V cyclic amide hydrolase (2.4 Å) from a species for which we were unable to identify a substrate. Both structures were homologous with the tetrameric Toblerone fold enzyme AtzD, demonstrating a high degree of structural conservation within the cyclic amide hydrolase family. The barbituric acid hydrolase structure did not contain zinc, in contrast with early reports of zinc-dependent activity for this enzyme. Instead, each barbituric acid hydrolase monomer contained either Na or Mg, analogous to the structural metal found in cyanuric acid hydrolase. The cyclic amide hydrolase contained no metal but instead formed unusual, reversible, intermolecular vicinal disulfide bonds that contributed to the thermal stability of the protein. The active sites were largely conserved between the three enzymes, differing at six positions, which likely determine substrate specificity. The Toblerone fold enzymes catalyze an unusual ring-opening hydrolysis with cyclic amide substrates. A survey of these enzymes shows that there is a good correlation between physiological function and phylogenetic distribution within this family of enzymes and provide insights into the evolutionary relationships between the cyanuric acid and barbituric acid hydrolases. This family of enzymes is structurally and mechanistically distinct from other enzyme families; however, to date the structure of just two, physiologically identical, enzymes from this family has been described. We present two new structures: a barbituric acid hydrolase and an enzyme of unknown function. These structures confirm that members of the CyAH family have the unusual Toblerone fold, albeit with some significant differences.

摘要

最近,在环酰胺水解酶AtzD(一种氰尿酸水解酶)的首个结构被阐明时,发现了三角巧克力折叠。我们对环酰胺水解酶家族进行了调查,发现系统发育分布与对氰尿酸或巴比妥酸的特异性之间存在很强的相关性。由于其中一类蛋白缺乏表达,六个类别中的一类(IV)无法进行测试,而另一类(V)既没有氰尿酸水解酶活性也没有巴比妥酸水解酶活性。我们获得了来自一个物种的VI类巴比妥酸水解酶(1.7 Å)和来自一个物种的V类环酰胺水解酶(2.4 Å)的高分辨率X射线结构,对于后者我们无法鉴定出底物。这两种结构都与四聚体三角巧克力折叠酶AtzD同源,表明环酰胺水解酶家族内具有高度的结构保守性。与该酶锌依赖性活性的早期报道相反,巴比妥酸水解酶结构不含锌。相反,每个巴比妥酸水解酶单体含有Na或Mg,类似于氰尿酸水解酶中发现的结构金属。该环酰胺水解酶不含金属,而是形成了不寻常的、可逆的分子间邻位二硫键,这有助于蛋白质的热稳定性。三种酶的活性位点在很大程度上是保守的,在六个位置有所不同,这可能决定了底物特异性。三角巧克力折叠酶催化环酰胺底物进行不寻常的开环水解。对这些酶的调查表明,在这个酶家族中生理功能与系统发育分布之间存在良好的相关性,并为氰尿酸水解酶和巴比妥酸水解酶之间的进化关系提供了见解。这个酶家族在结构和机制上与其他酶家族不同;然而,迄今为止,仅描述了该家族中两种生理功能相同的酶的结构。我们展示了两种新结构:一种巴比妥酸水解酶和一种功能未知的酶。这些结构证实了环酰胺水解酶家族成员具有不寻常的三角巧克力折叠,尽管存在一些显著差异。

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