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[利用ELP-内含肽系统在 中生产抗菌肽DLP4] (注:原文中“using an ELP-Intein system”前缺少具体的宿主或表达系统等相关信息,翻译只能尽量按原文结构呈现)

[Production of antimicrobial peptide DLP4 in using an ELP-Intein system].

作者信息

Jiang Yu, Li Xiu, Lin Ying

机构信息

College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2022 Jun 25;38(6):2365-2376. doi: 10.13345/j.cjb.210841.

Abstract

DLP4 (defensin-like peptide 4) is a novel insect defensin, which has strong antibacterial activity against Gram-positive bacteria and is not susceptible to develop drug resistance. In this study, an elastin-like polypeptide (ELP) and an intein fusion system were used for production and purification of DLP4, which combined the characteristics of the phase transition of ELP and the C-cleavage of the intein. A recombinant expression plasmid pET-ELP-I-DLP4 was constructed and transformed into . Subsequently, DLP4 was purified by simple centrifugation, alternation of pH and temperature. However, the C-cleavage of the intein occurred unexpectedly during the process of expression and purification. To solve this problem, the intein was split into N-intein (I0) and C-intein (I0), and fused with ELP or DLP4 to construct two recombinant expression plasmids pET-ELP-I0 and pET-ELP-I0-DLP4, respectively. These two plasmids were transformed into . separately. The mixture of the two cultures of . strains restored the C-cleavage activity of the intein. This operation yielded DLP4 of about 1.49 mg/L. Antibacterial test confirmed that the purified DLP4 exhibited expected activity. Thus, this approach can be used as an effective way for DLP4 expression and purification in the prokaryotic system.

摘要

防御素样肽4(DLP4)是一种新型昆虫防御素,对革兰氏阳性菌具有强大的抗菌活性且不易产生耐药性。在本研究中,一种类弹性蛋白多肽(ELP)和内含肽融合系统被用于DLP4的生产和纯化,该系统结合了ELP的相变特性和内含肽的C端切割特性。构建了重组表达质粒pET-ELP-I-DLP4并将其转化到……随后,通过简单的离心、pH和温度变化对DLP4进行纯化。然而,内含肽的C端切割在表达和纯化过程中意外发生。为解决这个问题,将内含肽拆分为N端内含肽(I0)和C端内含肽(I0),并分别与ELP或DLP4融合构建了两个重组表达质粒pET-ELP-I0和pET-ELP-I0-DLP4。这两个质粒分别转化到……中。……菌株的两种培养物的混合物恢复了内含肽的C端切割活性。此操作产生了约1.49 mg/L的DLP4。抗菌测试证实纯化后的DLP4表现出预期活性。因此,这种方法可作为在原核系统中表达和纯化DLP4的有效途径。

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