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通过信号肽工程提高全长抗体产量。

Enhancing full-length antibody production by signal peptide engineering.

作者信息

Zhou Yizhou, Liu Peter, Gan Yutian, Sandoval Wendy, Katakam Anand Kumar, Reichelt Mike, Rangell Linda, Reilly Dorothea

机构信息

Department of Early Stage Cell Culture, Genentech Inc., 1 DNA way, South San Francisco, CA, 94080, USA.

Department of Protein Chemistry, Genentech Inc., 1 DNA way, South San Francisco, CA, 94080, USA.

出版信息

Microb Cell Fact. 2016 Mar 2;15:47. doi: 10.1186/s12934-016-0445-3.

Abstract

BACKGROUND

Protein secretion to the periplasm of Escherichia coli offers an attractive route for producing heterologous proteins including antibodies. In this approach, a signal peptide is fused to the N-terminus of the heterologous protein. The signal peptide mediates translocation of the heterologous protein from the cytoplasm to the periplasm and is cleaved during the translocation process. It was previously shown that optimization of the translation initiation region (TIR) which overlaps with the nucleotide sequence of the signal sequence improves the production of heterologous proteins. Despite the progress, there is still room to improve yields using secretion as a means to produce protein complexes such as full-length monoclonal antibodies (mAbs).

RESULTS

In this study we identified the inefficient secretion of heavy chain as the limitation for full-length mAb accumulation in the periplasm. To improve heavy chain secretion we investigated the effects of various signal peptides at controlled TIR strengths. The signal peptide of disulfide oxidoreductase (DsbA) mediated more efficient secretion of heavy chain than the other signal peptides tested. Mutagenesis studies demonstrated that at controlled translational levels, hydrophobicity of the hydrophobic core (H-region) of the signal peptide is a critical factor for heavy chain secretion and full-length mAb accumulation in the periplasm. Increasing the hydrophobicity of a signal peptide enhanced heavy chain secretion and periplasmic levels of assembled full-length mAbs, while decreasing the hydrophobicity had the opposite effect.

CONCLUSIONS

This study demonstrates that under similar translational strengths, the hydrophobicity of the signal peptide plays an important role in heavy chain secretion. Increasing the hydrophobicity of the H-region and controlling TIR strengths can serve as an approach to improve heavy chain secretion and full-length mAb production in E. coli.

摘要

背景

将蛋白质分泌到大肠杆菌周质中为生产包括抗体在内的异源蛋白质提供了一条有吸引力的途径。在这种方法中,信号肽与异源蛋白质的N端融合。信号肽介导异源蛋白质从细胞质转运到周质,并在转运过程中被切割。先前的研究表明,与信号序列核苷酸序列重叠的翻译起始区域(TIR)的优化可提高异源蛋白质的产量。尽管取得了进展,但使用分泌作为生产蛋白质复合物(如全长单克隆抗体(mAb))的手段,仍有提高产量的空间。

结果

在本研究中,我们确定重链分泌效率低下是周质中全长mAb积累的限制因素。为了提高重链分泌,我们研究了在可控TIR强度下各种信号肽的作用。二硫键氧化还原酶(DsbA)的信号肽介导的重链分泌比其他测试的信号肽更有效。诱变研究表明,在可控的翻译水平下,信号肽疏水核心(H区)的疏水性是重链分泌和周质中全长mAb积累的关键因素。增加信号肽的疏水性可增强重链分泌和组装好的全长mAb的周质水平,而降低疏水性则产生相反的效果。

结论

本研究表明,在相似的翻译强度下,信号肽的疏水性在重链分泌中起重要作用。增加H区的疏水性并控制TIR强度可作为提高大肠杆菌中重链分泌和全长mAb产量的一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9014/4776426/b810c6dd6e6e/12934_2016_445_Fig1_HTML.jpg

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