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原核类泛素硫酯融合蛋白增强大肠杆菌中外源蛋白的表达和聚集。

Prokaryotic ubiquitin-like ThiS fusion enhances the heterologous protein overexpression and aggregation in Escherichia coli.

机构信息

Chinese Academy of Medical Sciences and Peking Union Medical College, Institute of Materia Medica, Beijing Key Laboratory of New Drug Mechanisms and Pharmacological Evaluation Study, Beijing, People's Republic of China.

出版信息

PLoS One. 2013 Apr 25;8(4):e62529. doi: 10.1371/journal.pone.0062529. Print 2013.

Abstract

Fusion tags are commonly employed to enhance target protein expression, improve their folding and solubility, and reduce protein degradation in expression of recombinant proteins. Ubiquitin (Ub) and SUMO are highly conserved small proteins in eukaryotes, and frequently used as fusion tags in prokaryotic expression. ThiS, a smaller sulfur-carrier protein involved in thiamin synthesis, is conserved among most prokaryotic species. The structural similarity between ThiS and Ub provoked us into expecting that the former could be used as a fusion tag. Hence, ThiS was fused to insulin A and B chains, murine Ribonuclease Inhibitor (mRI) and EGFP, respectively. When induced in Escherichia coli, ThiS-fused insulin A and B chains were overexpressed in inclusion bodies, and to higher levels in comparison to the same proteins fused with Ub. On the contrast, ThiS fusion of mRI, an unstable protein, resulted in enhanced degradation that was not alleviated in protease-deficient strains. While the degradation of Ub- and SUMO-fused mRI was less and seemed protease-dependent. Enhanced degradation of mRI did not occur for the fusions with half-molecules of ThiS. When ThiS-tag was fused to the C-terminus of EGFP, higher expression, predominantly in inclusion bodies, was observed again. It was further found that ThiS fusion of EGFP significantly retarded its refolding process. These results indicated that prokaryotic ThiS is able to promote the expression of target proteins in E. coli, but enhanced degradation may occur in case of unstable targets. Unlike eukaryotic Ub-based tags usually increase the solubility and folding of proteins, ThiS fusion enhances the expression by augmenting the formation of inclusion bodies, probably through retardation of the folding of target proteins.

摘要

融合标签通常用于增强靶蛋白的表达,改善其折叠和可溶性,并减少重组蛋白表达中的蛋白降解。泛素 (Ub) 和 SUMO 是真核生物中高度保守的小蛋白,常被用作原核表达的融合标签。硫载体蛋白 ThiS 是一种参与硫胺素合成的较小蛋白,在大多数原核物种中都保守。ThiS 与 Ub 的结构相似,这促使我们预期前者可以用作融合标签。因此,ThiS 分别与胰岛素 A 链和 B 链、鼠核糖核酸酶抑制剂 (mRI) 和 EGFP 融合。在大肠杆菌中诱导时,ThiS 融合的胰岛素 A 链和 B 链以包涵体形式过表达,表达水平高于与 Ub 融合的相同蛋白。相比之下,不稳定蛋白 mRI 的 ThiS 融合导致降解增强,在蛋白酶缺陷菌株中也未得到缓解。而 Ub 和 SUMO 融合的 mRI 降解较少,似乎依赖于蛋白酶。ThiS 半分子融合对 mRI 的降解没有增强。当 ThiS 标签融合到 EGFP 的 C 末端时,再次观察到更高的表达,主要是包涵体形式。进一步发现,ThiS 融合的 EGFP 显著延迟了其重折叠过程。这些结果表明,原核 ThiS 能够在大肠杆菌中促进靶蛋白的表达,但在不稳定靶标情况下可能会发生增强的降解。与通常增加蛋白可溶性和折叠性的真核 Ub 基标签不同,ThiS 融合通过延缓靶蛋白的折叠来增强表达,从而增加包涵体的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0969/3636215/587d2b4505ee/pone.0062529.g001.jpg

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