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开发用于提高重组蛋白产量的高性能诱导型和分泌型表达载体及宿主系统。

Development of high-performance inducible and secretory expression vector and host system for enhanced recombinant protein production.

作者信息

Yoon Sunghyun, Seo Keun Seok, Park Nogi, Kim Chaeyoung, Dey Prattay, Thornton Justin A, Park Joo Youn

机构信息

Department of Comparative Biomedical Sciences, College of Veterinary Medicine, Mississippi State University, Mississippi state, MS, 39762, USA.

Division of Microbiology, National Center for Toxicological Research, U.S. Food and Drug Administration, Jefferson, AR, 72079, USA.

出版信息

Sci Rep. 2024 Dec 28;14(1):30780. doi: 10.1038/s41598-024-81001-0.

Abstract

The production of lipopolysaccharide (LPS)-free recombinant proteins from culture supernatants is of great interest to biomedical research and industry. Due to the LPS-free cell wall structure and the well-defined secretion factor B (SecB)-dependent secretion pathway, Gram-positive bacteria are a superior alternative to Escherichia coli expression systems. However, the lack of inducible expression systems for high yields has been a bottleneck. To address this, we developed the pKS81 plasmid, featuring the uhpT (glucose-6-phosphate [G6P] transporter) promoter for high expression of recombinant proteins induced by extracellular G6P via a three-component hexose phosphate transport regulatory system (HptARS), the N-terminal SecB-dependent signal peptide sequence for recombinant protein secretion, and the C-terminal 8 × histidine tag for purification by nickel affinity chromatography. We also generated an expression host strain, Staphylococcus aureus LAC9, lacks the uhpT gene and harmful superantigen and leukotoxin genes, allowing for constitutive HptARS activation by extracellular G6P and increased safety, respectively. Using the pKS81 plasmid, we successfully achieved high yields of prokaryotic (staphylococcal leukotoxin E) and eukaryotic (human annexin A2 protein tagged with mouse IgG1) recombinant proteins, up to 900 mg/L. Our newly established inducible and secretory expression system provides for efficient production and easy purification of LPS-free recombinant proteins, making it valuable for biomedical research and industrial applications.

摘要

从培养上清液中生产无脂多糖(LPS)的重组蛋白对生物医学研究和产业具有重大意义。由于其无LPS的细胞壁结构以及明确的分泌因子B(SecB)依赖性分泌途径,革兰氏阳性菌是大肠杆菌表达系统的优质替代选择。然而,缺乏用于高产的诱导表达系统一直是个瓶颈。为解决这一问题,我们开发了pKS81质粒,其具有uhpT(葡萄糖-6-磷酸[G6P]转运蛋白)启动子以便通过三组分磷酸己糖转运调节系统(HptARS)由细胞外G6P诱导重组蛋白高表达,具有用于重组蛋白分泌的N端SecB依赖性信号肽序列,以及用于通过镍亲和层析进行纯化的C端8×组氨酸标签。我们还构建了一种表达宿主菌株——金黄色葡萄球菌LAC9,其缺乏uhpT基因以及有害的超抗原和白细胞毒素基因,分别使得细胞外G6P能够组成性激活HptARS并提高安全性。使用pKS81质粒,我们成功实现了原核(葡萄球菌白细胞毒素E)和真核(标记有小鼠IgG1的人膜联蛋白A2蛋白)重组蛋白的高产,产量高达900 mg/L。我们新建立的诱导型分泌表达系统可实现无LPS重组蛋白的高效生产和简便纯化,对生物医学研究和工业应用具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ee9/11681091/9009402f224e/41598_2024_81001_Fig1_HTML.jpg

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