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Conformational Design and Characterisation of a Truncated Diamine Oxidase from Arthrobacter globiformis

机译:球形节杆菌截短的二胺氧化酶的构象设计和表征

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摘要

A functional mini protein can be developed by miniaturising its size. The minimisation technique provides an excellent model system for studying native enzymes, especially in creating an alternative novel biocatalyst. Miniaturised proteins may have enhanced stability, a crucial characteristic for large-scale production and industrial applications. In this study, a huge enzyme molecule, known as diamine oxidase (DAO, comprising 700 amino acids), was selected to undergo the process. By retaining the arrangement of the original functional sites of DAO in the fourth domain, a mini DAO can be designed via homology modelling. After several downsizing processes, a final configuration of 220 amino acids displayed high binding affinity towards histamine, a short-chain substrate that was catalysed by the parental DAO. The configuration also showed enhanced affinity towards a long-chain substrate known as spermidine. The gene for the designed protein was cloned and expressed in pET102/TOPO vector and overexpressed in E. coli BL21 (DE3). The new mini DAO had similar temperature tolerance and versatile substrates specificity characteristics as its parental protein. An active mini-protein with these characteristics is potentially useful for several applications such as detecting biogenic amines in the biological fluids and the environment that may give rise to health issues.
机译:可以通过使其大小最小化来开发功能性微型蛋白。最小化技术为研究天然酶(特别是在创建替代的新型生物催化剂方面)提供了出色的模型系统。小型化的蛋白质可能具有增强的稳定性,这是大规模生产和工业应用的关键特征。在这项研究中,选择了一个巨大的酶分子,称为二胺氧化酶(DAO,包含700个氨基酸),以进行此过程。通过保留DAO的原始功能位点在第四域中的排列,可以通过同源性建模设计迷你DAO。经过数次尺寸缩小过程后,最终的220个氨基酸构型显示出对组胺的高结合亲和力,组胺是一种由亲本DAO催化的短链底物。该构型还显示出对称为亚精胺的长链底物的亲和力增强。克隆了所设计蛋白质的基因,并在pET102 / TOPO载体中表达,并在大肠杆菌BL21(DE3)中过表达。新型mini DAO具有与其亲本蛋白相似的温度耐受性和通用的底物特异性特征。具有这些特征的活性微蛋白可能在多种应用中有用,例如检测生物液和环境中可能引起健康问题的生物胺。

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