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在乳酸乳球菌中正确折叠的葡萄球菌抗原的生产、分泌及纯化

Production, secretion and purification of a correctly folded staphylococcal antigen in Lactococcus lactis.

作者信息

Samazan Frédéric, Rokbi Bachra, Seguin Delphine, Telles Fabienne, Gautier Valérie, Richarme Gilbert, Chevret Didier, Varela Paloma Fernández, Velours Christophe, Poquet Isabelle

机构信息

INRA, UMR1319 Micalis (Microbiologie de l'Alimentation au service de la Santé), Domaine de Vilvert, 78352, Jouy-en-Josas Cedex, France.

Institut Curie/CNRS, UMR3244, 25 rue d'Ulm, 75248, Paris Cedex 05, France.

出版信息

Microb Cell Fact. 2015 Jul 16;14:104. doi: 10.1186/s12934-015-0271-z.

Abstract

BACKGROUND

Lactococcus lactis, a lactic acid bacterium traditionally used to ferment milk and manufacture cheeses, is also, in the biotechnology field, an interesting host to produce proteins of medical interest, as it is "Generally Recognized As Safe". Furthermore, as L. lactis naturally secretes only one major endogenous protein (Usp45), the secretion of heterologous proteins in this species facilitates their purification from a protein-poor culture medium. Here, we developed and optimized protein production and secretion in L. lactis to obtain proteins of high quality, both correctly folded and pure to a high extent. As proteins to be produced, we chose the two transmembrane members of the HtrA protease family in Staphylococcus aureus, an important extra-cellular pathogen, as these putative surface-exposed antigens could constitute good targets for vaccine development.

RESULTS

A recombinant ORF encoding a C-terminal, soluble, proteolytically inactive and tagged form of each staphylococcal HtrA protein was cloned into a lactococcal expression-secretion vector. After growth and induction of recombinant gene expression, L. lactis was able to produce and secrete each recombinant rHtrA protein as a stable form that accumulated in the culture medium in similar amounts as the naturally secreted endogenous protein, Usp45. L. lactis growth in fermenters, in particular in a rich optimized medium, led to higher yields for each rHtrA protein. Protein purification from the lactococcal culture medium was easily achieved in one step and allowed recovery of highly pure and stable proteins whose identity was confirmed by mass spectrometry. Although rHtrA proteins were monomeric, they displayed the same secondary structure content, thermal stability and chaperone activity as many other HtrA family members, indicating that they were correctly folded. rHtrA protein immunogenicity was established in mice. The raised polyclonal antibodies allowed studying the expression and subcellular localization of wild type proteins in S. aureus: although both proteins were expressed, only HtrA1 was found to be, as predicted, exposed at the staphylococcal cell surface suggesting that it could be a better candidate for vaccine development.

CONCLUSIONS

In this study, an efficient process was developed to produce and secrete putative staphylococcal surface antigens in L. lactis and to purify them to homogeneity in one step from the culture supernatant. This allowed recovering fully folded, stable and pure proteins which constitute promising vaccine candidates to be tested for protection against staphylococcal infection. L. lactis thus proved to be an efficient and competitive cell factory to produce proteins of high quality for medical applications.

摘要

背景

乳酸乳球菌是一种传统上用于发酵牛奶和制造奶酪的乳酸菌,在生物技术领域,它也是一种用于生产具有医学价值蛋白质的理想宿主,因为它“一般认为是安全的”。此外,由于乳酸乳球菌仅天然分泌一种主要的内源性蛋白质(Usp45),在该菌种中分泌异源蛋白质便于从蛋白质含量低的培养基中进行纯化。在此,我们开发并优化了乳酸乳球菌中的蛋白质生产和分泌过程,以获得高质量的蛋白质,这些蛋白质既正确折叠又高度纯净。作为要生产的蛋白质,我们选择了重要的细胞外病原体金黄色葡萄球菌中HtrA蛋白酶家族的两个跨膜成员,因为这些假定的表面暴露抗原可能构成疫苗开发的良好靶点。

结果

将编码每种葡萄球菌HtrA蛋白C端、可溶性、蛋白水解无活性且带有标签形式的重组开放阅读框克隆到乳酸乳球菌表达分泌载体中。在重组基因表达的生长和诱导后,乳酸乳球菌能够产生并分泌每种重组rHtrA蛋白,其以稳定形式存在,在培养基中的积累量与天然分泌的内源性蛋白Usp45相似。在发酵罐中培养乳酸乳球菌,特别是在丰富的优化培养基中培养,可使每种rHtrA蛋白获得更高产量。从乳酸乳球菌培养基中一步即可轻松实现蛋白质纯化,并可回收高度纯净且稳定的蛋白质,其身份通过质谱法得以确认。尽管rHtrA蛋白是单体形式,但它们与许多其他HtrA家族成员具有相同的二级结构含量、热稳定性和伴侣活性,表明它们已正确折叠。在小鼠中确定了rHtrA蛋白的免疫原性。所产生的多克隆抗体可用于研究金黄色葡萄球菌中野生型蛋白的表达和亚细胞定位:尽管两种蛋白均有表达,但正如预测的那样,仅发现HtrA1暴露于葡萄球菌细胞表面,这表明它可能是疫苗开发的更好候选物。

结论

在本研究中,开发了一种高效方法,用于在乳酸乳球菌中生产和分泌假定的葡萄球菌表面抗原,并从培养上清液中一步纯化至同质。这使得能够回收完全折叠、稳定且纯净的蛋白质,这些蛋白质构成了有望用于测试预防葡萄球菌感染的疫苗候选物。因此,乳酸乳球菌被证明是一种高效且有竞争力的细胞工厂,可用于生产高质量的医学应用蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f97/4502909/8a3bd50f7b17/12934_2015_271_Fig1_HTML.jpg

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