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具有广泛底物谱的LarA消旋酶催化作用和底物特异性的结构基础

Structural Basis for Catalysis and Substrate Specificity of a LarA Racemase with a Broad Substrate Spectrum.

作者信息

Gatreddi Santhosh, Urdiain-Arraiza Julian, Desguin Benoit, Hausinger Robert P, Hu Jian

出版信息

bioRxiv. 2024 Nov 28:2024.11.28.625916. doi: 10.1101/2024.11.28.625916.

Abstract

The LarA family consists of diverse racemases/epimerases that interconvert the diastereomers of a variety of α-hydroxyacids by using a nickel-pincer nucleotide (NPN) cofactor. The hidden redox reaction catalyzed by the NPN cofactor makes LarA enzymes attractive engineering targets for applications. However, how a LarA enzyme binds its natural substrate and recognizes different α-hydroxyacids has not been elucidated. Here, we report three high-resolution structures of the enzyme-substrate complexes of a broad-spectrum LarA enzyme from (LarA ). The substrate binding mode reveals an optimal orientation and distance between the hydride donor and acceptor, strongly supporting the proposed proton-coupled hydride transfer mechanism. The experimentally solved structures, together with the structural models of other LarA enzymes, allow us to identify the residues/structural elements critically involved in the interactions with different α-hydroxyacid substrates. Collectively, this work provides a critical structural basis for catalysis and substrate recognition of the diverse enzymes in the LarA family, thus building a foundation for enzyme engineering.

摘要

LarA家族由多种消旋酶/差向异构酶组成,这些酶通过使用镍钳形核苷酸(NPN)辅因子来互变各种α-羟基酸的非对映异构体。NPN辅因子催化的隐藏氧化还原反应使LarA酶成为具有应用前景的有吸引力的工程靶点。然而,LarA酶如何结合其天然底物并识别不同的α-羟基酸尚未阐明。在此,我们报道了一种来自[具体来源未给出]的广谱LarA酶(LarA )的酶-底物复合物的三个高分辨率结构。底物结合模式揭示了氢化物供体和受体之间的最佳取向和距离,有力地支持了所提出的质子耦合氢化物转移机制。实验解析的结构,连同其他LarA酶的结构模型,使我们能够鉴定与不同α-羟基酸底物相互作用中关键涉及的残基/结构元件。总体而言,这项工作为LarA家族中各种酶的催化和底物识别提供了关键的结构基础,从而为酶工程奠定了基础。

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