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黄曲霉中一种新型嗜热样 OYE 的结构与功能表征。

Structural and functional characterization of a new thermophilic-like OYE from Aspergillus flavus.

机构信息

College of Biological Engineering, Henan Unsssiversity of Technology, 100 Lianhua Street, Zhengzhou, 450001, Henan, China.

Henan International Joint Laboratory of Biocatalysis and Bio-Based Products, College of Life Sciences, Henan Agricultural University, 95 Wenhua Road, Zhengzhou, 450002, China.

出版信息

Appl Microbiol Biotechnol. 2024 Dec;108(1):134. doi: 10.1007/s00253-023-12963-w. Epub 2024 Jan 13.

Abstract

Old yellow enzymes (OYEs) have been proven as powerful biocatalysts for the asymmetric reduction of activated alkenes. Fungi appear to be valuable sources of OYEs, but most of the fungal OYEs are unexplored. To expand the OYEs toolbox, a new thermophilic-like OYE (AfOYE1) was identified from Aspergillus flavus strain NRRL3357. The thermal stability analysis showed that the T of AfOYE1 was 60 °C, and it had the optimal temperature at 45 °C. Moreover, AfOYE1 exhibited high reduction activity in a wide pH range (pH 5.5-8.0). AfOYE1 could accept cyclic enones, acrylamide, nitroalkenes, and α, β-unsaturated aldehydes as substrates and had excellent enantioselectivity toward prochiral alkenes (> 99% ee). Interestingly, an unexpected (S)-stereoselectivity bioreduction toward 2-methylcyclohexenone was observed. The further crystal structure of AfOYE1 revealed that the "cap" region from Ala132 to Thr182, the loop of Ser316 to Gly325, α short helix of Arg371 to Gln375, and the C-terminal "finger" structure endow the catalytic cavity of AfOYE1 quite deep and narrow, and flavin mononucleotide (FMN) heavily buried at the bottom of the active site tunnel. Furthermore, the catalytic mechanism of AfOYE1 was also investigated, and the results confirmed that the residues His211, His214, and Tyr216 compose its catalytic triad. This newly identified thermophilic-like OYE would thus be valuable for asymmetric alkene hydrogenation in industrial processes. KEY POINTS: A new thermophilic-like OYE AfOYE1 was identified from Aspergillus flavus, and the T of AfOYE1 was 60 °C AfOYE1 catalyzed the reduction of 2-methylcyclohexenone with (S)-stereoselectivity The crystal structure of AfOYE1 was revealedv.

摘要

从黄曲霉 NRRL3357 中鉴定出一种新型嗜热类似 OYE(AfOYE1)。热稳定性分析表明,AfOYE1 的 T 为 60°C,最适温度为 45°C。此外,AfOYE1 在较宽的 pH 范围内(pH 5.5-8.0)表现出较高的还原活性。AfOYE1 可以接受环状烯酮、丙烯酰胺、硝基烯烃和α,β-不饱和醛作为底物,对前手性烯烃具有优异的对映选择性(>99%ee)。有趣的是,观察到 2-甲基环己烯酮的意外(S)-立体选择性生物还原。AfOYE1 的进一步晶体结构表明,从 Ala132 到 Thr182 的“帽”区域、Ser316 到 Gly325 的环、Arg371 到 Gln375 的α短螺旋和 C 末端“手指”结构赋予了 AfOYE1 相当深而窄的催化腔,黄素单核苷酸(FMN)深深地埋藏在活性位点隧道的底部。此外,还研究了 AfOYE1 的催化机制,结果证实残基 His211、His214 和 Tyr216 构成其催化三联体。这种新鉴定的嗜热类似 OYE 将在工业过程中用于不对称烯烃氢化。 要点:从黄曲霉中鉴定出一种新型嗜热类似 OYE(AfOYE1),AfOYE1 的 T 为 60°C AfOYE1 催化 2-甲基环己烯酮具有(S)-立体选择性的还原反应 AfOYE1 的晶体结构被揭示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/537b/10787880/550e6c3ac93b/253_2023_12963_Fig1_HTML.jpg

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