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南极 sp. 菌株的合成生物学工具包:构建用于功能驱动宏基因组学的嗜冷非模式底盘。

Synthetic Biology Toolbox for Antarctic sp. Strains: Toward a Psychrophilic Nonmodel Chassis for Function-Driven Metagenomics.

机构信息

Departamento de Bioquímica y Genómica Microbianas. Instituto de Investigaciones Biológicas Clemente Estable, Av. Italia 3318, Montevideo 11600, Uruguay.

Departamento de Biologia. FFCLRP, University of São Paulo, 14049-901 Ribeirão Preto, São Paulo, Brazil.

出版信息

ACS Synth Biol. 2023 Mar 17;12(3):722-734. doi: 10.1021/acssynbio.2c00543. Epub 2023 Mar 2.

Abstract

One major limitation of function-driven metagenomics is the ability of the host to express the metagenomic DNA correctly. Differences in the transcriptional, translational, and post-translational machinery between the organism to which the DNA belongs and the host strain are all factors that influence the success of a functional screening. For this reason, the use of alternative hosts is an appropriate approach to favor the identification of enzymatic activities in function-driven metagenomics. To be implemented, appropriate tools should be designed to build the metagenomic libraries in those hosts. Moreover, discovery of new chassis and characterization of synthetic biology toolbox in nonmodel bacteria is an active field of research to expand the potential of these organisms in processes of industrial interest. Here, we assessed the suitability of two Antarctic psychrotolerant strains as putative alternative hosts for function-driven metagenomics using pSEVA modular vectors as scaffold. We determined a set of synthetic biology tools suitable for these hosts and, as a proof of concept, we demonstrated their fitness for heterologous protein expression. These hosts represent a step forward for the prospection and identification of psychrophilic enzymes of biotechnological interest.

摘要

功能驱动的宏基因组学的一个主要限制因素是宿主正确表达宏基因组 DNA 的能力。属于 DNA 的生物体与宿主菌株之间在转录、翻译和翻译后机制方面的差异,都是影响功能筛选成功的因素。出于这个原因,使用替代宿主是一种合适的方法,可以促进功能驱动的宏基因组学中酶活性的鉴定。为此,应设计适当的工具来在这些宿主中构建宏基因组文库。此外,在非模式细菌中发现新底盘和表征合成生物学工具箱是一个积极的研究领域,旨在扩大这些生物体在工业感兴趣的过程中的潜力。在这里,我们评估了两种南极耐冷菌株作为功能驱动的宏基因组学的潜在替代宿主的适用性,使用 pSEVA 模块化载体作为支架。我们确定了一套适用于这些宿主的合成生物学工具,并作为概念验证,我们证明了它们适合异源蛋白表达。这些宿主代表着在勘察和鉴定具有生物技术应用价值的嗜冷酶方面向前迈出了一步。

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