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一种意想不到的残留蛋白复合物揭示了 -三嗪降解酶的进化起源。

An unexpected vestigial protein complex reveals the evolutionary origins of an -triazine catabolic enzyme.

机构信息

From the Biocatalysis and Synthetic Biology Team and.

the Research School of Chemistry, Australian National University, Canberra, Australian Capital Territory 2601, and.

出版信息

J Biol Chem. 2018 May 18;293(20):7880-7891. doi: 10.1074/jbc.RA118.001996. Epub 2018 Mar 9.

Abstract

Cyanuric acid is a metabolic intermediate of -triazines, such as atrazine (a common herbicide) and melamine (used in resins and plastics). Cyanuric acid is mineralized to ammonia and carbon dioxide by the soil bacterium sp. strain ADP via three hydrolytic enzymes (AtzD, AtzE, and AtzF). Here, we report the purification and biochemical and structural characterization of AtzE. Contrary to previous reports, we found that AtzE is not a biuret amidohydrolase, but instead it catalyzes the hydrolytic deamination of 1-carboxybiuret. X-ray crystal structures of apo AtzE and AtzE bound with the suicide inhibitor phenyl phosphorodiamidate revealed that the AtzE enzyme complex consists of two independent molecules in the asymmetric unit. We also show that AtzE forms an α2β2 heterotetramer with a previously unidentified 68-amino acid-long protein (AtzG) encoded in the cyanuric acid mineralization operon from sp. strain ADP. Moreover, we observed that AtzG is essential for the production of soluble, active AtzE and that this obligate interaction is a vestige of their shared evolutionary origin. We propose that AtzEG was likely recruited into the cyanuric acid-mineralizing pathway from an ancestral glutamine transamidosome that required protein-protein interactions to enforce the exclusion of solvent from the transamidation reaction.

摘要

三聚氰胺酸是三嗪类化合物(如莠去津,一种常见的除草剂)和三聚氰胺(用于树脂和塑料)的代谢中间产物。土壤细菌 sp. 菌株 ADP 通过三种水解酶(AtzD、AtzE 和 AtzF)将三聚氰胺酸矿化为氨和二氧化碳。在这里,我们报告了 AtzE 的纯化和生化及结构特征。与之前的报道相反,我们发现 AtzE 不是脲酶酰胺水解酶,而是催化 1-羧基脲的水解脱氨。apo AtzE 和与自杀抑制剂苯膦酸二酰胺结合的 AtzE 的 X 射线晶体结构表明,AtzE 酶复合物由不对称单位中的两个独立分子组成。我们还表明,AtzE 与以前在 sp. 菌株 ADP 的三聚氰胺酸矿化操纵子中编码的 68 个氨基酸长的蛋白(AtzG)形成一个 α2β2 异四聚体。此外,我们观察到 AtzG 对于产生可溶性、活性 AtzE 是必不可少的,这种必需的相互作用是它们共同进化起源的遗迹。我们提出,AtzEG 可能是从需要蛋白质-蛋白质相互作用来强制排除转酰胺反应溶剂的祖先谷氨酰胺转酰胺酶体中招募到三聚氰胺酸矿化途径中的。

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