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XdpB,细菌老黄酶,无 FMN 形式的晶体结构。

The crystal structure of XdpB, the bacterial old yellow enzyme, in an FMN-free form.

机构信息

Institute of Biotechnology CAS, v. v. i., BIOCEV, Vestec, Prague West, Czech Republic.

Department of Biochemistry, Faculty of Science, Charles University Prague, Czech Republic.

出版信息

PLoS One. 2018 Apr 9;13(4):e0195299. doi: 10.1371/journal.pone.0195299. eCollection 2018.

Abstract

Old Yellow Enzymes (OYEs) are NAD(P)H dehydrogenases of not fully resolved physiological roles that are widespread among bacteria, plants, and fungi and have a great potential for biotechnological applications. We determined the apo form crystal structure of a member of the OYE class, glycerol trinitrate reductase XdpB, from Agrobacterium bohemicum R89-1 at 2.1 Å resolution. In agreement with the structures of the related bacterial OYEs, the structure revealed the TIM barrel fold with an N-terminal β-hairpin lid, but surprisingly, the structure did not contain its cofactor FMN. Its putative binding site was occupied by a pentapeptide TTSDN from the C-terminus of a symmetry related molecule. Biochemical experiments confirmed a specific concentration-dependent oligomerization and a low FMN content. The blocking of the FMN binding site can exist in vivo and regulates enzyme activity. Our bioinformatic analysis indicated that a similar self-inhibition could be expected in more OYEs which we designated as subgroup OYE C1. This subgroup is widespread among G-bacteria and can be recognized by the conserved sequence GxxDYP in proximity of the C termini. In proteobacteria, the C1 subgroup OYEs are typically coded in one operon with short-chain dehydrogenase. This operon is controlled by the tetR-like transcriptional regulator. OYEs coded in these operons are unlikely to be involved in the oxidative stress response as the other known members of the OYE family because no upregulation of XdpB was observed after exposing A. bohemicum R89-1 to oxidative stress.

摘要

老黄酶(OYE)是 NAD(P)H 脱氢酶,其生理作用尚未完全确定,广泛存在于细菌、植物和真菌中,具有巨大的生物技术应用潜力。我们测定了来自根癌农杆菌 R89-1 的 OYE 类成员甘油三硝酸酯还原酶 XdpB 的无辅基形式晶体结构,分辨率为 2.1Å。与相关细菌 OYE 的结构一致,该结构显示 TIM 桶折叠结构,带有 N 端β发夹盖,但令人惊讶的是,该结构不包含其辅因子 FMN。其假定的结合位点被来自对称相关分子 C 末端的五肽 TTSDN 占据。生化实验证实了特定浓度依赖性的寡聚化和低 FMN 含量。FMN 结合位点的阻断可能存在于体内并调节酶活性。我们的生物信息学分析表明,类似的自我抑制可能存在于更多我们指定为 OYE C1 亚组的 OYE 中。该亚组在 G-细菌中广泛存在,可以通过 C 末端附近保守序列 GxxDYP 来识别。在变形菌中,C1 亚组 OYE 通常与短链脱氢酶一起编码在一个操纵子中。该操纵子受 tetR 样转录调节因子控制。由于在将根癌农杆菌 R89-1 暴露于氧化应激后没有观察到 XdpB 的上调,因此编码这些操纵子中的 OYE 不太可能参与氧化应激反应,因为它们不是 OYE 家族的其他已知成员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd60/5891007/9c2c39ac6adc/pone.0195299.g001.jpg

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