利用半自动无细胞表达和硝基苯探针筛选假定的聚酯聚氨酯降解酶。

IF 2.6 Q2 BIOCHEMICAL RESEARCH METHODS
Synthetic biology (Oxford, England) Pub Date : 2024-02-13 eCollection Date: 2024-01-01 DOI:10.1093/synbio/ysae005
Afrin Ahsan, Dominique Wagner, Vanessa A Varaljay, Victor Roman, Nancy Kelley-Loughnane, Nigel F Reuel
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引用次数: 0

摘要

无细胞表达(CFE)近来已显示出在发现酶原型方面的实用性。在这项工作中,CFE 被证明是筛选推定聚酯聚氨酯降解酶序列的有效工具,这些序列来自对飞机和车辆上的生物膜进行的元基因组分析。使用带有温度控制块的自动流体处理装置来组装大量 30 µL 的 CFE 反应,结果比人工组装更加一致。总之,利用内部大肠杆菌提取物和最小线性模板,表达了来自生物膜生物的 13 种推测水解酶以及先前验证的聚酯降解角质酶。然后使用硝基苯共轭底物直接在提取物中测试这些酶的酯酶活性,结果显示它们对较短底物(4-硝基苯己酸酯和 4-硝基苯戊酸酯)的敏感性最高。这一筛选确定了 10 种对这些底物具有显著统计学活性的酶;然而,按 CFE 体积计算,所有酶的测定相对活性都低于已建立的角叉菜酶对照。这种方法预示着可以利用 CFE 和报告探针快速制作原型、筛选和设计来自环境联合体的合成聚合物降解酶。图表摘要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Screening putative polyester polyurethane degrading enzymes with semi-automated cell-free expression and nitrophenyl probes.

Cell-free expression (CFE) has shown recent utility in prototyping enzymes for discovery efforts. In this work, CFE is demonstrated as an effective tool to screen putative polyester polyurethane degrading enzyme sequences sourced from metagenomic analysis of biofilms prospected on aircraft and vehicles. An automated fluid handler with a controlled temperature block is used to assemble the numerous 30 µL CFE reactions to provide more consistent results over human assembly. In sum, 13 putative hydrolase enzymes from the biofilm organisms as well as a previously verified, polyester-degrading cutinase were expressed using in-house E. coli extract and minimal linear templates. The enzymes were then tested for esterase activity directly in extract using nitrophenyl conjugated substrates, showing highest sensitivity to shorter substrates (4-nitrophenyl hexanoate and 4-nNitrophenyl valerate). This screen identified 10 enzymes with statistically significant activities against these substrates; however, all were lower in measured relative activity, on a CFE volume basis, to the established cutinase control. This approach portends the use of CFE and reporter probes to rapidly prototype, screen and design for synthetic polymer degrading enzymes from environmental consortia. Graphical Abstract.

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