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两种含有多个共价黄素辅因子的细菌多黄素化蛋白的表征。

Characterization of two bacterial multi-flavinylated proteins harboring multiple covalent flavin cofactors.

作者信息

Tong Yapei, Rozeboom Henriette J, Loonstra Marnix R, Wijma Hein J, Fraaije Marco W

机构信息

Molecular Enzymology group, University of Groningen, Nijenborgh 4, Groningen 9747AG, the Netherlands.

出版信息

BBA Adv. 2023 Jul 5;4:100097. doi: 10.1016/j.bbadva.2023.100097. eCollection 2023.

Abstract

In recent years, studies have shown that a large number of bacteria secrete multi-flavinylated proteins. The exact roles and properties, of these extracellular flavoproteins that contain multiple covalently anchored FMN cofactors, are still largely unknown. Herein, we describe the biochemical and structural characterization of two multi-FMN-containing covalent flavoproteins, SaFMN3 from and CbFMN4 from . Based on their primary structure, these proteins were predicted to contain three and four covalently tethered FMN cofactors, respectively. The genes encoding SaFMN3 and CbFMN4 were heterologously coexpressed with a flavin transferase (ApbE) in , and could be purified by affinity chromatography in good yields. Both proteins were found to be soluble and to contain covalently bound FMN molecules. The SaFMN3 protein was studied in more detail and found to display a single redox potential (-184 mV) while harboring three covalently attached flavins. This is in line with the high sequence similarity when the domains of each flavoprotein are compared. The fully reduced form of SaFMN3 is able to use dioxygen as electron acceptor. Single domains from both proteins were expressed, purified and crystallized. The crystal structures were elucidated, which confirmed that the flavin cofactor is covalently attached to a threonine. Comparison of both crystal structures revealed a high similarity, even in the flavin binding pocket. Based on the crystal structure, mutants of the SaFMN3-D2 domain were designed to improve its fluorescence quantum yield by changing the microenvironment of the isoalloxazine moiety of the flavin cofactor. Residues that quench the flavin fluorescence were successfully identified. Our study reveals biochemical details of multi-FMN-containing proteins, contributing to a better understanding of their role in bacteria and providing leads to future utilization of these flavoprotein in biotechnology.

摘要

近年来,研究表明大量细菌会分泌多黄素化蛋白。这些含有多个共价锚定FMN辅因子的细胞外黄素蛋白的确切作用和特性仍 largely未知。在此,我们描述了两种含多个FMN的共价黄素蛋白的生化和结构特征,即来自[具体来源1]的SaFMN3和来自[具体来源2]的CbFMN4。基于它们的一级结构,预测这些蛋白分别含有三个和四个共价连接的FMN辅因子。编码SaFMN3和CbFMN4的基因与黄素转移酶(ApbE)在[具体宿主]中异源共表达,并可通过亲和层析以高产率纯化。发现这两种蛋白均为可溶的且含有共价结合的FMN分子。对SaFMN3蛋白进行了更详细的研究,发现其在含有三个共价连接的黄素时显示出单一的氧化还原电位(-184 mV)。当比较每种黄素蛋白的结构域时,这与高序列相似性一致。SaFMN3的完全还原形式能够将氧气用作电子受体。表达、纯化并结晶了这两种蛋白的单个结构域。阐明了晶体结构,证实黄素辅因子共价连接到苏氨酸上。两种晶体结构的比较显示出高度相似性,即使在黄素结合口袋中也是如此。基于晶体结构,设计了SaFMN3-D2结构域的突变体,通过改变黄素辅因子异咯嗪部分的微环境来提高其荧光量子产率。成功鉴定出淬灭黄素荧光的残基。我们的研究揭示了含多个FMN的蛋白的生化细节,有助于更好地理解它们在细菌中的作用,并为这些黄素蛋白在生物技术中的未来应用提供线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c72/10339131/05dbc0361cf6/gr5.jpg

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