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AjiA1 的晶体结构揭示了腺嘌呤形成酶家族中的一种新的结构运动机制。

The crystal structure of AjiA1 reveals a novel structural motion mechanism in the adenylate-forming enzyme family.

机构信息

Department of Microbiology, Institute of Biomedical Sciences II, University of São Paulo, São Paulo, Brazil.

Department of Biochemistry, University of Cambridge, Cambridge, United Kingdom.

出版信息

Acta Crystallogr D Struct Biol. 2020 Dec 1;76(Pt 12):1201-1210. doi: 10.1107/S2059798320013431. Epub 2020 Nov 19.

Abstract

Adenylate-forming enzymes (AFEs) are a mechanistic superfamily of proteins that are involved in many cellular roles. In the biosynthesis of benzoxazole antibiotics, an AFE has been reported to play a key role in the condensation of cyclic molecules. In the biosynthetic gene cluster for the benzoxazole AJI9561, AjiA1 catalyzes the condensation of two 3-hydroxyanthranilic acid (3-HAA) molecules using ATP as a co-substrate. Here, the enzymatic activity of AjiA1 is reported together with a structural analysis of its apo form. The structure of AjiA1 was solved at 2.0 Å resolution and shows a conserved fold with other AFE family members. AjiA1 exhibits activity in the presence of 3-HAA (K = 77.86 ± 28.36, k = 0.04 ± 0.004) and also with the alternative substrate 3-hydroxybenzoic acid (3-HBA; K = 22.12 ± 31.35, k = 0.08 ± 0.005). The structure of AjiA1 in the apo form also reveals crucial conformational changes that occur during the catalytic cycle of this enzyme which have not been described for any other AFE member. Consequently, the results shown here provide insights into this protein family and a new subgroup is proposed for enzymes that are involved in benzoxazole-ring formation.

摘要

腺苷酸形成酶(AFE)是一类参与多种细胞功能的蛋白质的机制超家族。在苯并恶唑类抗生素的生物合成中,已有报道称 AFE 在环分子的缩合中起关键作用。在苯并恶唑 AJI9561 的生物合成基因簇中,AjiA1 催化使用 ATP 作为共底物的两个 3-羟基邻氨基苯甲酸(3-HAA)分子的缩合。在这里,报道了 AjiA1 的酶活性及其 apo 形式的结构分析。AjiA1 的结构在 2.0 Å分辨率下解决,表现出与其他 AFE 家族成员保守的折叠。AjiA1 在存在 3-HAA(K = 77.86 ± 28.36,k = 0.04 ± 0.004)和替代底物 3-羟基苯甲酸(3-HBA;K = 22.12 ± 31.35,k = 0.08 ± 0.005)的情况下表现出活性。AjiA1 在 apo 形式的结构还揭示了发生在该酶催化循环中的关键构象变化,这些变化尚未在任何其他 AFE 成员中描述过。因此,这里显示的结果提供了对这个蛋白质家族的深入了解,并提出了一个新的亚组,用于涉及苯并恶唑环形成的酶。

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