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FlexiBAC:一种通用的、开源的杆状病毒载体系统,用于蛋白质表达、分泌和蛋白水解加工。

FlexiBAC: a versatile, open-source baculovirus vector system for protein expression, secretion, and proteolytic processing.

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307, Dresden, Germany.

Department of Cell Biology, Dept. of Biophysics, UT Southwestern Medical Center, Dallas, TX, 75390, USA.

出版信息

BMC Biotechnol. 2019 Mar 29;19(1):20. doi: 10.1186/s12896-019-0512-z.

Abstract

BACKGROUND

Baculovirus-mediated expression in insect cells is a powerful approach for protein production. However, many existing methods are time-consuming, offer limited options for protein tagging, and are unsuitable for secreted proteins requiring proteolytic maturation, such as TGF-β family growth factors.

RESULTS

To overcome the limitations of traditional baculovirus expression systems, we engineered "FlexiBAC". This system allows recombinant baculovirus formation inside insect cells and reduces the time between initial cloning and protein production to 13 days. FlexiBAC includes 143 shuttle vectors that append combinations of purification tags, fluorescent markers, proteolytic cleavage sites, trafficking signals, and chemical conjugation tags to the termini of the target protein. This system also overexpresses recombinant furin convertase to allow efficient proteolytic processing of secreted proteins. We demonstrate that FlexiBAC can be used to produce high levels of mature, active forms of TGF-β family growth factors, such as Activin A, as well as other proteins that are typically difficult to reconstitute, such as proteins rich in coiled-coil, low complexity, and disordered domains.

CONCLUSIONS

FlexiBAC is a protein expression system for production of both cytosolic proteins and secreted proteins that require proteolytic maturation. The design of FlexiBAC and its expansive complementary shuttle vector system reduces cloning steps and simplifies baculovirus production.

摘要

背景

杆状病毒介导的昆虫细胞表达是一种强大的蛋白质生产方法。然而,许多现有的方法耗时较长,对蛋白质标记的选择有限,并且不适合需要蛋白水解成熟的分泌蛋白,如 TGF-β 家族生长因子。

结果

为了克服传统杆状病毒表达系统的限制,我们设计了“FlexiBAC”。该系统允许重组杆状病毒在昆虫细胞内形成,并将初始克隆和蛋白质生产之间的时间缩短至 13 天。FlexiBAC 包含 143 个穿梭载体,可在靶蛋白的末端添加纯化标签、荧光标记物、蛋白水解切割位点、运输信号和化学偶联标签的组合。该系统还过表达重组弗林蛋白酶转化酶,以允许分泌蛋白的有效蛋白水解加工。我们证明 FlexiBAC 可用于生产高水平的成熟、有活性的 TGF-β 家族生长因子,如激活素 A,以及其他通常难以重组的蛋白质,如富含卷曲螺旋、低复杂度和无序结构域的蛋白质。

结论

FlexiBAC 是一种用于生产需要蛋白水解成熟的胞质蛋白和分泌蛋白的蛋白质表达系统。FlexiBAC 的设计及其广泛的互补穿梭载体系统减少了克隆步骤并简化了杆状病毒的生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66a6/6441187/c4fa2661c99f/12896_2019_512_Fig1_HTML.jpg

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