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来自[具体来源]的一种强大的热稳定腈水解酶Nit 的纯化与表征 。

Purification and Characterization of Nit , a Robust Thermostable Nitrilase From .

作者信息

Bessonnet Thomas, Mariage Aline, Petit Jean-Louis, Pellouin Virginie, Debard Adrien, Zaparucha Anne, Vergne-Vaxelaire Carine, de Berardinis Véronique

机构信息

Génomique Métabolique, Genoscope, Institut François Jacob, CEA, CNRS, Univ Evry, Université Paris-Saclay, Evry, France.

出版信息

Front Bioeng Biotechnol. 2021 Jul 1;9:686362. doi: 10.3389/fbioe.2021.686362. eCollection 2021.

Abstract

Despite the success of some nitrilases in industrial applications, there is a constant demand to broaden the catalog of these hydrolases, especially robust ones with high operational stability. By using the criteria of thermoresistance to screen a collection of candidate enzymes heterologously expressed in , the enzyme Nit from the mesophilic organism was selected and further characterized. Its quick and efficient purification by heat treatment is of major interest for large-scale applications. The purified nitrilase displayed a high thermostability with 90% of remaining activity after 2 days at 30°C and a half-life of 18 h at 60°C, together with a broad pH range of 5.5-8.5. Its high resistance to various miscible cosolvents and tolerance to high substrate loadings enabled the quantitative conversion of 65.5 g⋅L of 3-phenylpropionitrile into 3-phenylpropionic acid at 50°C in 8 h at low enzyme loadings of 0.5 g⋅L, with an isolated yield of 90%. This study highlights that thermophilic organisms are not the only source of industrially relevant thermostable enzymes and extends the scope of efficient nitrilases for the hydrolysis of a wide range of nitriles, especially -cinnamonitrile, terephthalonitrile, cyanopyridines, and 3-phenylpropionitrile.

摘要

尽管一些腈水解酶在工业应用中取得了成功,但人们一直有扩大这些水解酶种类的需求,尤其是具有高操作稳定性的强大酶类。通过使用耐热性标准筛选在[具体表达宿主]中异源表达的一系列候选酶,从嗜温生物[具体生物名称]中筛选出了Nit酶,并对其进行了进一步表征。其通过热处理快速高效纯化的特性对大规模应用具有重要意义。纯化后的腈水解酶表现出高耐热性,在30°C下放置2天后仍保留90%的活性,在60°C下的半衰期为18小时,同时具有5.5 - 8.5的宽pH范围。它对各种互溶共溶剂具有高抗性,对高底物负载具有耐受性,在50°C下8小时内,以0.5 g·L的低酶负载量可将65.5 g·L的3-苯基丙腈定量转化为3-苯基丙酸,分离产率为90%。这项研究突出表明嗜热生物并非工业相关耐热酶的唯一来源,并扩展了用于水解多种腈类(尤其是肉桂腈、对苯二甲腈、氰基吡啶和3-苯基丙腈)高效腈水解酶的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6aba/8280356/ff63c7c359f5/fbioe-09-686362-g001.jpg

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