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能够调整其蛋白质转运机制以增强周质重组蛋白的生产。

Can Adapt Its Protein Translocation Machinery for Enhanced Periplasmic Recombinant Protein Production.

作者信息

Karyolaimos Alexandros, Dolata Katarzyna Magdalena, Antelo-Varela Minia, Mestre Borras Anna, Elfageih Rageia, Sievers Susanne, Becher Dörte, Riedel Katharina, de Gier Jan-Willem

机构信息

Department of Biochemistry and Biophysics, Center for Biomembrane Research, Stockholm University, Stockholm, Sweden.

Institute of Microbiology, University of Greifswald, Greifswald, Germany.

出版信息

Front Bioeng Biotechnol. 2020 Jan 29;7:465. doi: 10.3389/fbioe.2019.00465. eCollection 2019.

Abstract

Recently, we engineered a tunable rhamnose promoter-based setup for the production of recombinant proteins in . This setup enabled us to show that being able to precisely set the production rate of a secretory recombinant protein is critical to enhance protein production yields in the periplasm. It is assumed that precisely setting the production rate of a secretory recombinant protein is required to harmonize its production rate with the protein translocation capacity of the cell. Here, using proteome analysis we show that enhancing periplasmic production of human Growth Hormone (hGH) using the tunable rhamnose promoter-based setup is accompanied by increased accumulation levels of at least three key players in protein translocation; the peripheral motor of the Sec-translocon (SecA), leader peptidase (LepB), and the cytoplasmic membrane protein integrase/chaperone (YidC). Thus, enhancing periplasmic hGH production leads to increased Sec-translocon capacity, increased capacity to cleave signal peptides from secretory proteins and an increased capacity of an alternative membrane protein biogenesis pathway, which frees up Sec-translocon capacity for protein secretion. When cells with enhanced periplasmic hGH production yields were harvested and subsequently cultured in the absence of inducer, SecA, LepB, and YidC levels went down again. This indicates that when using the tunable rhamnose-promoter system to enhance the production of a protein in the periplasm, can adapt its protein translocation machinery for enhanced recombinant protein production in the periplasm.

摘要

最近,我们构建了一种基于鼠李糖启动子的可调系统,用于在……中生产重组蛋白。该系统使我们能够证明,能够精确设定分泌型重组蛋白的生产速率对于提高周质中蛋白质的产量至关重要。据推测,精确设定分泌型重组蛋白的生产速率是为了使其生产速率与细胞的蛋白质转运能力相协调。在此,我们通过蛋白质组分析表明,使用基于鼠李糖启动子的可调系统提高人生长激素(hGH)的周质产量时,至少三种蛋白质转运关键因子的积累水平会增加;Sec转运体(SecA)的外周马达、信号肽酶(LepB)以及细胞质膜蛋白整合酶/伴侣蛋白(YidC)。因此,提高周质中hGH的产量会导致Sec转运体能力增强、从分泌蛋白上切割信号肽的能力增强以及另一种膜蛋白生物合成途径的能力增强,从而释放出Sec转运体用于蛋白质分泌的能力。当收获周质中hGH产量提高的细胞,随后在无诱导剂的情况下进行培养时,SecA、LepB和YidC的水平又会下降。这表明,当使用可调鼠李糖启动子系统提高周质中一种蛋白质的产量时,……能够使其蛋白质转运机制适应周质中重组蛋白产量的提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25f0/7000420/7335d42b8216/fbioe-07-00465-g0001.jpg

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