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双顺反子表达系统的开发用于增强和可靠地生产柠檬明串珠菌中的重组蛋白。

Development of bicistronic expression system for the enhanced and reliable production of recombinant proteins in Leuconostoc citreum.

机构信息

Department of Chemical and Biomolecular Engineering (BK21 Program), KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Republic of Korea.

Brain Korea 21 Center for Bio-Resource Development, Division of Animal, Horticultural and Food Sciences, Chungbuk National University, Cheongju, 28644, Republic of Korea.

出版信息

Sci Rep. 2018 Jun 11;8(1):8852. doi: 10.1038/s41598-018-27091-z.

Abstract

The lactic acid bacteria (LAB) Leuconostoc citreum are non-sporulating hetero-fermentative bacteria that play an important role in the fermented food industry. In this study, for the enhanced and reliable production of recombinant proteins in L. citreum, we developed a bicistronic design (BCD) expression system which includes a short leader peptide (1 cistron) followed by target genes (2 cistron) under the control of a single promoter. Using superfolder green fluorescent protein (sfGFP) as a reporter, the functionality of BCD in L. citreum was verified. Further, to improve the expression in BCD, we tried to engineer a Shine-Dalgarno sequence (SD2) for the 2 cistron and a promoter by FACS screening of random libraries, and both strong SD2 (eSD2) and promoter (P) were successfully isolated. The usefulness of the engineered BCD with P and eSD2 was further validated using three model proteins-glutathione-s-transferase, human growth hormone, and α-amylase. All examined proteins were successfully produced with levels highly increased compared with those in the original BCD as well as the monocistronic design (MCD) expression system.

摘要

乳杆菌(LAB)柠檬明串珠菌是非孢子形成的异型发酵细菌,在发酵食品工业中发挥着重要作用。在这项研究中,为了在柠檬明串珠菌中增强和可靠地生产重组蛋白,我们开发了一种双顺反子设计(BCD)表达系统,该系统包括一个短的启动肽(1 顺反子),其后是受单个启动子控制的靶基因(2 顺反子)。使用超折叠绿色荧光蛋白(sfGFP)作为报告基因,验证了 BCD 在柠檬明串珠菌中的功能。此外,为了提高 BCD 中的表达,我们尝试通过随机文库的 FACS 筛选来设计用于第 2 顺反子的 Shine-Dalgarno 序列(SD2)和启动子,并且成功分离出了强 SD2(eSD2)和启动子(P)。使用谷胱甘肽转移酶、人生长激素和α-淀粉酶这三种模型蛋白进一步验证了经过工程改造的具有 P 和 eSD2 的 BCD 的实用性。与原始 BCD 以及单顺反子设计(MCD)表达系统相比,所有检查的蛋白都成功地进行了生产,且产量有了显著提高。

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