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利用酿酒酵母生产和分泌亲和体分子的工程改造。

Engineering Saccharomyces cerevisiae for the production and secretion of Affibody molecules.

机构信息

Department of Biology and Biological Engineering, Chalmers University of Technology, Gothenburg, Sweden.

Affibody AB, Stockholm, Sweden.

出版信息

Microb Cell Fact. 2022 Mar 9;21(1):36. doi: 10.1186/s12934-022-01761-0.

Abstract

BACKGROUND

Affibody molecules are synthetic peptides with a variety of therapeutic and diagnostic applications. To date, Affibody molecules have mainly been produced by the bacterial production host Escherichia coli. There is an interest in exploring alternative production hosts to identify potential improvements in terms of yield, ease of production and purification advantages. In this study, we evaluated the feasibility of Saccharomyces cerevisiae as a production chassis for this group of proteins.

RESULTS

We examined the production of three different Affibody molecules in S. cerevisiae and found that these Affibody molecules were partially degraded. An albumin-binding domain, which may be attached to the Affibody molecules to increase their half-life, was identified to be a substrate for several S. cerevisiae proteases. We tested the removal of three vacuolar proteases, proteinase A, proteinase B and carboxypeptidase Y. Removal of one of these, proteinase A, resulted in intact secretion of one of the targeted Affibody molecules. Removal of either or both of the two additional proteases, carboxypeptidase Y and proteinase B, resulted in intact secretion of the two remaining Affibody molecules. The produced Affibody molecules were verified to bind their target, human HER3, as potently as the corresponding molecules produced in E. coli in an in vitro surface-plasmon resonance binding assay. Finally, we performed a fed-batch fermentation with one of the engineered protease-deficient S. cerevisiae strains and achieved a protein titer of 530 mg Affibody molecule/L.

CONCLUSION

This study shows that engineered S. cerevisiae has a great potential as a production host for recombinant Affibody molecules, reaching a high titer, and for proteins where endotoxin removal could be challenging, the use of S. cerevisiae obviates the need for endotoxin removal from protein produced in E. coli.

摘要

背景

亲和体分子是具有多种治疗和诊断应用的合成肽。迄今为止,亲和体分子主要由细菌生产宿主大肠杆菌生产。人们有兴趣探索替代生产宿主,以确定在产量、生产便利性和纯化优势方面的潜在改进。在这项研究中,我们评估了酿酒酵母作为这类蛋白质生产底盘的可行性。

结果

我们研究了三种不同亲和体分子在酿酒酵母中的生产情况,发现这些亲和体分子部分降解。鉴定出一种白蛋白结合结构域,可能与亲和体分子结合以增加其半衰期,它是几种酿酒酵母蛋白酶的底物。我们测试了去除三种液泡蛋白酶,即蛋白酶 A、蛋白酶 B 和羧肽酶 Y。去除其中一种蛋白酶 A,导致一种靶向亲和体分子完整分泌。去除另外两种蛋白酶中的一种或两种,羧肽酶 Y 和蛋白酶 B,导致两种剩余亲和体分子完整分泌。产生的亲和体分子被证实能够像在大肠杆菌中生产的相应分子一样,在体外表面等离子体共振结合测定中与它们的靶标,人 HER3,强有力地结合。最后,我们用一种工程化的缺乏蛋白酶的酿酒酵母菌株进行了分批补料发酵,实现了 530mg 亲和体分子/L 的蛋白滴度。

结论

这项研究表明,工程化的酿酒酵母具有作为重组亲和体分子生产宿主的巨大潜力,可以达到很高的滴度,对于内毒素去除可能具有挑战性的蛋白质,使用酿酒酵母可以避免从大肠杆菌中生产的蛋白质中去除内毒素的需要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec90/8905840/8e6f7da60e93/12934_2022_1761_Fig1_HTML.jpg

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