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氧化酶还是肽酶?对来自双孢蘑菇的一种潜在黄曲霉毒素氧化酶的计算研究。

Oxidase or peptidase? A computational insight into a putative aflatoxin oxidase from Armillariella tabescens.

机构信息

Department of Organic Chemistry and Biochemistry, Ruđer Bošković Institute, Zagreb, Croatia.

出版信息

Proteins. 2019 May;87(5):390-400. doi: 10.1002/prot.25661. Epub 2019 Feb 1.

DOI:10.1002/prot.25661
PMID:30681192
Abstract

Aflatoxin oxidase (AFO), an enzyme isolated from Armillariella tabescens, has been reported to degrade aflatoxin B1 (AFB1). However, recent studies reported sequence and structure similarities with the dipeptidyl peptidase III (DPP III) family of enzymes and confirmed peptidase activity toward DPP III substrates. In light of these investigations, an extensive computational study was performed in order to improve understanding of the AFO functions. Steered MD simulations revealed long-range domain motions described as protein opening, characteristic for DPPs III and necessary for substrate binding. Newly identified open and partially open forms of the enzyme closely resemble those of the human DPP III orthologue. Docking of a synthetic DPP III substrate Arg -2-naphthylamide revealed a binding mode similar to the one found in crystal structures of human DPP III complexes with peptides with the S1 and S2 subsites' amino acid residues conserved. On the other hand, no energetically favorable AFB1 binding mode was detected, suggesting that aflatoxins are not good substrates of AFO. High plasticity of the zinc ion coordination sphere within the active site, consistent with that of up to date studied DPPs III, was observed as well. A detailed electrostatic analysis of the active site revealed a predominance of negatively charged regions, unsuitable for the binding of the neutral AFB1. The present study is in line with the most recent experimental study on this enzyme, both suggesting that AFO is a typical member of the DPP III family.

摘要

黄曲霉素氧化酶(AFO)是从粗皮侧耳中分离得到的一种酶,据报道可降解黄曲霉毒素 B1(AFB1)。然而,最近的研究报告称其与二肽基肽酶 III(DPP III)家族的酶具有序列和结构相似性,并证实了对 DPP III 底物的肽酶活性。有鉴于此,进行了广泛的计算研究,以加深对 AFO 功能的理解。导向 MD 模拟揭示了长程结构域运动,可描述为蛋白质打开,这是 DPPs III 的特征,也是底物结合所必需的。新鉴定的酶的开放和部分开放形式与人类 DPP III 同源物非常相似。对接合成的 DPP III 底物 Arg-2-萘基酰胺揭示了一种与在晶体结构中发现的与 S1 和 S2 亚基氨基酸残基保守的肽与人类 DPP III 复合物的结合模式相似。另一方面,没有检测到 AFB1 结合的有利能模式,这表明黄曲霉毒素不是 AFO 的良好底物。还观察到活性位点中锌离子配位球的高塑性,与迄今为止研究的 DPPs III 一致。对活性位点的详细静电分析表明,存在带负电荷的区域占主导地位,不适合中性 AFB1 的结合。本研究与最近对该酶的实验研究一致,都表明 AFO 是 DPP III 家族的典型成员。

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