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从三叠纪盐矿中分离出的耐溶剂嗜盐古菌(R)选择性转氨酶的特性研究。

Characterisation of a solvent-tolerant haloarchaeal (R)-selective transaminase isolated from a Triassic period salt mine.

机构信息

School of Pharmacy, Queen's University Belfast, Belfast, UK.

School of Biological Sciences, Queen's University Belfast, Belfast, UK.

出版信息

Appl Microbiol Biotechnol. 2019 Jul;103(14):5727-5737. doi: 10.1007/s00253-019-09806-y. Epub 2019 May 23.

Abstract

Transaminase enzymes (TAms) are becoming increasingly valuable in the chemist's toolbox as a biocatalytic route to chiral amines. Despite high profile successes, the lack of (R)-selective TAms and robustness under harsh industrial conditions continue to prove problematic. Herein, we report the isolation of the first haloarchaeal TAm (BC61-TAm) to be characterised for the purposes of pharmaceutical biocatalysis. BC61-TAm is an (R)-selective enzyme, cloned from an extremely halophilic archaeon, isolated from a Triassic period salt mine. Produced using a Haloferax volcanii-based expression model, the resulting protein displays a classic halophilic activity profile, as well as thermotolerance (optimum 50 °C) and organic solvent tolerance. Molecular modelling predicts the putative active site residues of haloarchaeal TAms, with molecular dynamics simulations providing insights on the basis of BC61-TAm's organic solvent tolerance. These results represent an exciting advance in the study of transaminases from extremophiles, providing a possible scaffold for future discovery of biocatalytic enzymes with robust properties.

摘要

转氨酶(TAms)作为手性胺的生物催化途径,在化学家的工具包中变得越来越有价值。尽管取得了很高的成就,但缺乏(R)选择性的 TAms 和在恶劣的工业条件下的稳健性仍然是一个问题。在此,我们报告了第一个嗜盐古菌 TAm(BC61-TAm)的分离,该 TAm 被用于药物生物催化的目的。BC61-TAm 是一种(R)选择性酶,从一种极端嗜盐古菌中克隆而来,该古菌从三叠纪盐矿中分离出来。使用基于 Haloferax volcanii 的表达模型生产,得到的蛋白质显示出典型的嗜盐活性谱,以及耐热性(最佳 50°C)和有机溶剂耐受性。分子建模预测了嗜盐古菌 TAms 的假定活性位点残基,分子动力学模拟提供了基于 BC61-TAm 的有机溶剂耐受性的基础上的见解。这些结果代表了极端微生物中转氨酶研究的一个令人兴奋的进展,为未来发现具有稳健特性的生物催化酶提供了一个可能的支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af14/6597733/14259084c5cc/253_2019_9806_Fig1_HTML.jpg

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