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来自黑曲霉AKU 3302的两种胺氧化酶以对苯二酚醌作为辅因子:不寻常的辅因子与谷氨酰残基的连接仅发生在其中一种酶上。

Two amine oxidases from Aspergillus niger AKU 3302 contain topa quinone as the cofactor: unusual cofactor link to the glutamyl residue occurs only at one of the enzymes.

作者信息

Frébort I, Pec P, Luhová L, Toyama H, Matsushita K, Hirota S, Kitagawa T, Ueno T, Asano Y, Kato Y, Adachi O

机构信息

Department of Biological Chemistry, Faculty of Agriculture, Yamaguchi University, Japan.

出版信息

Biochim Biophys Acta. 1996 Jun 7;1295(1):59-72. doi: 10.1016/0167-4838(96)00014-3.

DOI:10.1016/0167-4838(96)00014-3
PMID:8679675
Abstract

Amine oxidases (EC 1.4.3.6) from Aspergillus niger, AO-I (2 x 75 kDa) and AO-II (80 kDa), were examined to determine the cofactor structure. Inactivated with p-nitrophenylhydrazine, they showed absorption and fluorescence spectra similar to those published for other copper amine oxidases and to topa hydantoin p-nitrophenylhydrazone. After digestion by thermolysin and pronase, cofactor peptides were purified by HPLC and sequenced. For thermolytic peptides, a typical topa consensus sequence, Asn-X-Glu-Tyr, was obtained for AO-II, although in case of AO-I it overlapped with Val-Val-Ile-Glu-Pro-Tyr-Gly. For pronase peptides of AO-I, only the latter sequence was obtained. NMR and mass spectroscopy confirmed the residue X as topa p-nitrophenylhydrazone in AO-II and revealed the presence of a residue Z attached to the Glu in the peptide Val-Val-Ile-Glu(Z)-Pro of AO-I. This residue was separated from the peptide by hydrolysis and identified as a product derived from topa quinone. The data, together with amino-acid sequence of AO-I, confer strong evidence for topa quinone as the cofactor, bound in the typical consensus sequence. Raman spectra of the p-nitrophenylhydrazone derivative of AO-I and its pronase peptide showed essentially the same peaks matching to a model compound for topa p-nitrophenylhydrazone. However, there may exist an unusual ester link between the topa-404 and Glu-145 in the native enzyme.

摘要

对黑曲霉中的胺氧化酶(EC 1.4.3.6)AO-I(2×75 kDa)和AO-II(80 kDa)进行了研究,以确定其辅因子结构。用对硝基苯肼使其失活后,它们显示出的吸收光谱和荧光光谱与已发表的其他铜胺氧化酶以及对羟基苯乙内酰脲对硝基苯腙的光谱相似。经嗜热菌蛋白酶和链霉蛋白酶消化后,通过高效液相色谱法纯化辅因子肽段并进行测序。对于嗜热菌蛋白酶消化产生的肽段,AO-II获得了典型的对羟基苯乙内酰胺共有序列Asn-X-Glu-Tyr,不过对于AO-I,该序列与Val-Val-Ile-Glu-Pro-Tyr-Gly重叠。对于AO-I的链霉蛋白酶肽段,仅获得了后一个序列。核磁共振和质谱分析证实AO-II中残基X为对羟基苯乙内酰脲对硝基苯腙,并揭示了AO-I的肽段Val-Val-Ile-Glu(Z)-Pro中与Glu相连的残基Z的存在。该残基通过水解与肽段分离,并鉴定为源自对羟基苯醌的产物。这些数据连同AO-I的氨基酸序列,有力地证明了对羟基苯醌是辅因子,以典型的共有序列结合。AO-I及其链霉蛋白酶肽段的对硝基苯腙衍生物的拉曼光谱显示出与对羟基苯乙内酰脲对硝基苯腙模型化合物基本相同的峰。然而,天然酶中对羟基苯醌-404与Glu-145之间可能存在异常的酯键。

相似文献

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Two amine oxidases from Aspergillus niger AKU 3302 contain topa quinone as the cofactor: unusual cofactor link to the glutamyl residue occurs only at one of the enzymes.来自黑曲霉AKU 3302的两种胺氧化酶以对苯二酚醌作为辅因子:不寻常的辅因子与谷氨酰残基的连接仅发生在其中一种酶上。
Biochim Biophys Acta. 1996 Jun 7;1295(1):59-72. doi: 10.1016/0167-4838(96)00014-3.
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Gene organization and molecular modeling of copper amine oxidase from Aspergillus niger: re-evaluation of the cofactor structure.黑曲霉铜胺氧化酶的基因组织与分子建模:辅因子结构的重新评估
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Two distinct quinoprotein amine oxidases are induced by n-butylamine in the mycelia of Aspergillus niger AKU 3302. Purification, characterization, cDNA cloning and sequencing.两种不同的喹啉蛋白胺氧化酶由正丁胺在黑曲霉AKU 3302的菌丝体中诱导产生。纯化、特性鉴定、cDNA克隆及测序。
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Identification of topaquinone and its consensus sequence in copper amine oxidases.在铜胺氧化酶中对topa醌及其共有序列的鉴定。
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Copper/topa quinone-containing histamine oxidase from Arthrobacter globiformis. Molecular cloning and sequencing, overproduction of precursor enzyme, and generation of topa quinone cofactor.球形节杆菌含铜/对苯二酚醌的组胺氧化酶。分子克隆与测序、前体酶的过量表达以及对苯二酚醌辅因子的生成。
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Reassessment of the active site quino-cofactor proposed to occur in the Aspergillus niger amine oxidase AO-I from the properties of model compounds.
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The organic functional group in copper-containing amine oxidases. Resonance Raman spectra are consistent with the presence of topa quinone (6-hydroxydopa quinone) in the active site.含铜胺氧化酶中的有机官能团。共振拉曼光谱与活性位点中存在对苯二酚醌(6-羟基多巴醌)一致。
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Identification of the quinone cofactor in mammalian semicarbazide-sensitive amine oxidase.哺乳动物氨基脲敏感胺氧化酶中醌辅因子的鉴定
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Active-site covalent modifications of quinoprotein amine oxidases from Aspergillus niger. Evidence for binding of the mechanism-based inhibitor, 1,4-diamino-2-butyne, to residue Lys356 involved in the catalytic cycle.黑曲霉喹蛋白胺氧化酶活性位点的共价修饰。基于机制的抑制剂1,4-二氨基-2-丁炔与催化循环中涉及的赖氨酸残基Lys356结合的证据。
Eur J Biochem. 1994 Nov 1;225(3):959-65. doi: 10.1111/j.1432-1033.1994.0959b.x.

引用本文的文献

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Chem Rev. 2014 Apr 23;114(8):4343-65. doi: 10.1021/cr400475g. Epub 2013 Dec 18.
2
Quinoprotein-catalysed reactions.醌蛋白催化的反应。
Biochem J. 1996 Dec 15;320 ( Pt 3)(Pt 3):697-711. doi: 10.1042/bj3200697.