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在恶臭假单胞菌 CSV86 中高效表达重组蛋白和周质定位的模块的开发。

Development of efficient modules for recombinant protein expression and periplasmic localisation in Pseudomonas bharatica CSV86.

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology-Bombay, Powai, Mumbai, 400076, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology-Bombay, Powai, Mumbai, 400076, India.

出版信息

Protein Expr Purif. 2023 Oct;210:106310. doi: 10.1016/j.pep.2023.106310. Epub 2023 May 19.

Abstract

Escherichia coli has been widely employed as a host for heterologous protein expression. However, due to certain limitations, alternative hosts like Pseudomonas, Lactococcus and Bacillus are being explored. Pseudomonas bharatica CSV86, a novel soil isolate, preferentially degrades wide range of aromatics over simple carbon sources like glucose and glycerol. Strain also possesses advantageous eco-physiological traits, making it an ideal host for engineering xenobiotic degradation pathways, which necessitates the development of heterologous expression systems. Based on the efficient growth, short lag-phase and rapid metabolism of naphthalene, Pnah and Psal promoters (regulated by NahR) were selected for expression. Pnah was found to be strong and leaky as compared to Psal, using 1-naphthol 2-hydroxylase (1NH, ∼66 kDa) as reporter gene in strain CSV86. The Carbaryl hydrolase (CH, ∼72 kDa) from Pseudomonas sp. C5pp was expressed under Pnah in strain CSV86 and could successfully be translocated to the periplasm due to the presence of the Tmd + Sp sequence. The recombinant CH was purified from the periplasmic fraction and the kinetic characteristics were found to be similar to the native protein from strain C5pp. These results potentiate the suitability of P. bharatica CSV86 as a desirable host, while Pnah and the Tmd + Sp can be employed for overexpression and periplasmic localisation, respectively. Such tools find application in heterologous protein expression and metabolic engineering applications.

摘要

大肠杆菌已被广泛用作异源蛋白表达的宿主。然而,由于某些限制,替代宿主如假单胞菌、乳球菌和芽孢杆菌正在被探索。巴氏毕赤酵母 CSV86 是一种新型土壤分离株,优先降解广泛的芳香族化合物,而不是葡萄糖和甘油等简单碳源。该菌株还具有有利的生态生理特性,使其成为工程化外来物降解途径的理想宿主,这就需要开发异源表达系统。基于萘的高效生长、短迟滞期和快速代谢,选择了 naph 启动子和 Psal 启动子(由 NahR 调控)进行表达。与 Psal 相比,Pnah 表现出更强的渗漏性,使用 1-萘酚 2-羟化酶(1NH,约 66 kDa)作为 CSV86 菌株中的报告基因。从 Pseudomonas sp. C5pp 中获得的 Carbaryl 水解酶(CH,约 72 kDa)在 CSV86 菌株中在 Pnah 下表达,并由于存在 Tmd+Sp 序列而成功转运到周质腔。重组 CH 从周质腔部分纯化,动力学特性与来自 C5pp 菌株的天然蛋白相似。这些结果证明了巴氏毕赤酵母 CSV86 作为理想宿主的适用性,而 Pnah 和 Tmd+Sp 可分别用于过表达和周质腔定位。这些工具在异源蛋白表达和代谢工程应用中具有应用价值。

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