Structure and function of a lignostilbene-α,β-dioxygenase orthologue from Pseudomonas brassicacearum.

Q2 Biochemistry, Genetics and Molecular Biology BMC Biochemistry Pub Date : 2018-08-16 DOI:10.1186/s12858-018-0098-4
Peter C Loewen, Jacek Switala, James P Wells, Fang Huang, Anthony T Zara, John S Allingham, Michele C Loewen
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引用次数: 12

Abstract

Background: Stilbene cleaving oxygenases (SCOs), also known as lignostilbene-α,β-dioxygenases (LSDs) mediate the oxidative cleavage of the olefinic double bonds of lignin-derived intermediate phenolic stilbenes, yielding small modified benzaldehyde compounds. SCOs represent one branch of the larger carotenoid cleavage oxygenases family. Here, we describe the structural and functional characterization of an SCO-like enzyme from the soil-born, bio-control agent Pseudomonas brassicacearum.

Methods: In vitro and in vivo assays relying on visual inspection, spectrophotometric quantification, as well as liquid-chormatographic and mass spectrometric characterization were applied for functional evaluation of the enzyme. X-ray crystallographic analyses and in silico modeling were applied for structural investigations.

Results: In vitro assays demonstrated preferential cleavage of resveratrol, while in vivo analyses detected putative cleavage of the straight chain carotenoid, lycopene. A high-resolution structure containing the seven-bladed β-propeller fold and conserved 4-His-Fe unit at the catalytic site, was obtained. Comparative structural alignments, as well as in silico modelling and docking, highlight potential molecular factors contributing to both the primary in vitro activity against resveratrol, as well as the putative subsidiary activities against carotenoids in vivo, for future validation.

Conclusions: The findings reported here provide validation of the SCO structure, and highlight enigmatic points with respect to the potential effect of the enzyme's molecular environment on substrate specificities for future investigation.

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甘蓝型假单胞菌木质素二苯乙烯-α,β-双加氧酶同源物的结构与功能。
背景:二苯乙烯裂解加氧酶(SCOs),也称为木质素二苯乙烯-α,β-二氧酶(LSDs),介导木质素衍生的中间体酚类二苯乙烯的烯烃双键的氧化裂解,产生小的改性苯甲醛化合物。SCOs代表较大的类胡萝卜素切割加氧酶家族的一个分支。在这里,我们描述了一种来自土壤中的类似SCO的酶的结构和功能特征,该酶是生物控制剂假单胞菌。方法:采用基于目视检查、分光光度定量以及液体色谱和质谱表征的体外和体内测定法对该酶进行功能评价。X射线晶体学分析和计算机模拟被应用于结构研究。结果:体外分析显示白藜芦醇优先裂解,而体内分析则检测到直链类胡萝卜素番茄红素的假定裂解。获得了一个高分辨率结构,该结构包含位于催化位点的七叶β-螺旋桨折叠和保守的4-His-Fe单元。比较结构比对以及计算机建模和对接,突出了有助于抗白藜芦醇的主要体外活性以及体内抗类胡萝卜素的假定辅助活性的潜在分子因素,以供未来验证。结论:本文报道的研究结果验证了SCO结构,并强调了酶的分子环境对底物特异性的潜在影响,以供未来研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Biochemistry
BMC Biochemistry BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: BMC Biochemistry is an open access journal publishing original peer-reviewed research articles in all aspects of biochemical processes, including the structure, function and dynamics of metabolic pathways, supramolecular complexes, enzymes, proteins, nucleic acids and small molecular components of organelles, cells and tissues. BMC Biochemistry (ISSN 1471-2091) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record, Thomson Reuters (ISI) and Google Scholar.
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