Suppr超能文献

高通量筛选曲霉中腈水解酶和腈酶的区别及 Box-Behnken 设计优化腈酶

High-throughput screening for distinguishing nitrilases from nitrile hydratases in Aspergillus and application of a Box-Behnken design for the optimization of nitrilase.

机构信息

Department of Biological Sciences, State University of Santa Cruz, Ilhéus, Bahia, Brazil.

Department of Exact and Technological Sciences, State University of Santa Cruz, Ilhéus, Bahia, Brazil.

出版信息

Biotechnol Appl Biochem. 2022 Oct;69(5):2081-2090. doi: 10.1002/bab.2269. Epub 2021 Oct 19.

Abstract

Nitrilases and nitrile hydratases/amidases hydrolyze nitriles into carboxylic acids and/or amides, which are used in industrial chemical processes. In the present study, 26 microorganisms, including yeasts and filamentous fungi, in a minimum solid mineral medium supplemented with glucose and phenylacetonitrile were screened to evaluate their biocatalytic potential. Of these microorganisms, five fungi of the genus Aspergillus were selected and subjected to colorimetry studies to evaluate the production and distinction of nitrilase and nitrile hydratase/amidase enzymes. Aspergillus parasiticus Speare 7967 and A. niger Tiegh. 8285 produced nitrilases and nitrile hydratase, respectively. Nitrilase optimization was performed using a Box-Behnken design (BBD) and fungus A. parasiticus Speare 7967 with phenylacetonitrile volume (μl), pH, and carbohydrate source (starch:glucose; g/g) as independent variables and nitrilase activity (U ml ) as dependent variable. Maximum activity (2.97 × 10  U ml ) was obtained at pH 5.5, 80 μl of phenylacetonitrile, and 15 g of glucose. A. parasiticus Speare 7967 showed promise in the biotransformation of nitriles to carboxylic acids.

摘要

腈水解酶和腈水合酶/酰胺酶将腈水解为羧酸和/或酰胺,这些物质被用于工业化学过程。在本研究中,在补充有葡萄糖和苯乙腈的最小固体矿物培养基中筛选了 26 种微生物,包括酵母和丝状真菌,以评估其生物催化潜力。在这些微生物中,选择了五个属曲霉的真菌进行比色研究,以评估产腈酶和腈水合酶/酰胺酶的能力。Speare 7967 曲霉和 Tiegh. 8285 黑曲霉分别产生了腈酶和腈水合酶。使用 Box-Behnken 设计 (BBD) 和苯乙腈体积 (μl)、pH 值和碳水化合物来源(淀粉:葡萄糖;g/g)作为独立变量,真菌 A. parasiticus Speare 7967 作为依赖变量对腈酶进行了优化。在 pH 值为 5.5、80 μl 苯乙腈和 15 g 葡萄糖的条件下,获得了最大的酶活(2.97×10 U/ml)。Speare 7967 曲霉在将腈转化为羧酸方面具有很大的应用潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验