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两步法功能筛选多种蛋白质底物揭示具有广谱底物范围的耐温蛋白酶。

Two-step functional screen on multiple proteinaceous substrates reveals temperature-robust proteases with a broad-substrate range.

机构信息

NORCE Norwegian Research Centre, Thormøhlens gate 55, 5006, Bergen, Norway.

Institute of Catalysis, Consejo Superior de Investigaciones Científicas, 28049, Madrid, Spain.

出版信息

Appl Microbiol Biotechnol. 2021 Apr;105(8):3195-3209. doi: 10.1007/s00253-021-11235-9. Epub 2021 Mar 26.

Abstract

To support the bio-based industry in development of environment-friendly processes and products, an optimal toolbox of biocatalysts is key. Although functional screen of (meta)genomic libraries may potentially contribute to identifying new enzymes, the discovery of new enzymes meeting industry compliance demands is still challenging. This is particularly noticeable in the case of proteases, for which the reports of metagenome-derived proteases with industrial applicability are surprisingly limited. Indeed, proteolytic clones have been typically assessed by its sole activity on casein or skim milk and limited to mild screening conditions. Here, we demonstrate the use of six industry-relevant animal and plant by-products, namely bone, feather, blood meals, gelatin, gluten, and zein, as complementary substrates in functional screens and show the utility of temperature as a screening parameter to potentially discover new broad-substrate range and robust proteases for the biorefinery industry. By targeting 340,000 clones from two libraries of pooled isolates of mesophilic and thermophilic marine bacteria and two libraries of microbial communities inhabiting marine environments, we identified proteases in four of eleven selected clones that showed activity against all substrates herein tested after prolonged incubation at 55 °C. Following sequencing, in silico analysis and recombinant expression in Escherichia coli, one functional protease, 58% identical at sequence level to previously reported homologs, was found to readily hydrolyze highly insoluble zein at temperatures up to 50 °C and pH 9-11. It is derived from a bacterial group whose ability to degrade zein was unknown. This study reports a two-step screen resulting in identification of a new marine metagenome-derived protease with zein-hydrolytic properties at common biomass processing temperatures that could be useful for the modern biorefinery industry. KEY POINTS: • A two-step multi-substrate strategy for discovery of robust proteases. • Feasible approach for shortening enzyme optimization to industrial demands. • A new temperature-tolerant protease efficiently hydrolyzes insoluble zein.

摘要

为了支持生物基产业开发环保工艺和产品,最佳的生物催化剂工具包是关键。虽然(宏)基因组文库的功能筛选可能有助于发现新的酶,但发现符合行业规范要求的新酶仍然具有挑战性。这在蛋白酶的情况下尤为明显,因为具有工业应用潜力的宏基因组衍生蛋白酶的报道出奇地有限。事实上,通常仅根据其在酪蛋白或脱脂乳上的单一活性来评估蛋白水解克隆,并限制在温和的筛选条件下。在这里,我们展示了将六种与工业相关的动物和植物副产品(即骨头、羽毛、血粉、明胶、面筋和玉米醇溶蛋白)用作功能筛选的补充底物,并展示了温度作为筛选参数的实用性,以潜在地发现新的广谱底物范围和用于生物精炼厂的稳健蛋白酶。通过针对来自嗜温和嗜热海洋细菌混合分离物文库以及栖息在海洋环境中的微生物群落文库的 340,000 个克隆进行靶向筛选,我们在 11 个选定克隆中的 4 个克隆中鉴定出了对所有在此处测试的底物都具有活性的蛋白酶,这些克隆在 55°C 下孵育延长后显示出活性。经过测序、计算机分析和在大肠杆菌中的重组表达,发现一种功能蛋白酶,在序列水平上与先前报道的同源物有 58%的同一性,它可以在高达 50°C 和 pH 值 9-11 的温度下轻易水解高度不溶性的玉米醇溶蛋白。它来源于一个细菌群,其降解玉米醇溶蛋白的能力尚不清楚。这项研究报告了一种两步筛选方法,可鉴定出一种新型的海洋宏基因组衍生蛋白酶,该蛋白酶在常见的生物质加工温度下具有玉米醇溶蛋白水解特性,可用于现代生物精炼厂。关键点: • 用于发现稳健蛋白酶的两步多底物策略。 • 缩短酶优化以满足工业需求的可行方法。 • 一种新的耐高温蛋白酶可有效水解不溶性玉米醇溶蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481e/8053189/c57fac52088c/253_2021_11235_Fig1_HTML.jpg

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