National Engineering Laboratory for Cereal Fermentation Technology, Jiangnan University, Wuxi, 214122, China.
School of Biotechnology, Jiangnan University, Wuxi, 214122, China.
Microb Cell Fact. 2019 May 27;18(1):91. doi: 10.1186/s12934-019-1142-9.
Self-assembling amphipathic peptides (SAPs) may improve protein production or induce the formation of inclusion bodies by fusing them to the N-terminus of proteins. However, they do not function uniformly well with all target enzymes and systematic research on how the composition of SAPs influence the production of fusion protein is still limited.
To improve the efficiency of SAPs, we studied factors that might be involved in SAP-mediated protein production using S1 (AEAEAKAK) as the original SAP and green fluorescent protein (GFP) as the reporter. The results indicate that hydrophobicity and net charges of SAPs play a key role in protein expression. As hydrophobicity regulation tend to cause the formation of insoluble inclusion bodies of protein, an expression tag library composed of SAPs, which varied in net charge (from + 1 to + 20), was constructed based on the random amplification of S1nv1 (ANANARAR). The efficiency of the library was validated by polygalacturonate lyase (PGL), lipoxygenase (LOX), L-asparaginase (ASN) and transglutaminase (MTG). To accelerate preliminary screening, each enzyme was fused at the C-terminus with GFP. Among the four enzyme fusions, the SAPs with + 2 - + 6 net charges were optimal for protein expression. Finally, application of the library improved the expression of PGL, LOX, ASN, and MTG by 8.3, 3.5, 2.64, and 3.68-fold relative to that of the corresponding wild-type enzyme, respectively.
This is the first report to study key factors of SAPs as an expression tag to enhance recombinant enzyme production. The SAP library could be used as a novel plug-and-play protein-engineering method to screen for enzymes or proteins with enhanced production.
自组装两亲肽 (SAP) 可以通过融合到蛋白质的 N 端来提高蛋白质的产量或诱导包含体的形成。然而,它们并不适用于所有目标酶,并且关于 SAP 的组成如何影响融合蛋白生产的系统研究仍然有限。
为了提高 SAP 的效率,我们使用 S1(AEAEAKAK)作为原始 SAP 和绿色荧光蛋白(GFP)作为报告蛋白来研究可能涉及 SAP 介导的蛋白质生产的因素。结果表明,SAP 的疏水性和净电荷在蛋白质表达中起着关键作用。由于疏水性调节往往会导致蛋白质形成不溶性包含体,因此根据 S1nv1(ANANARAR)的随机扩增构建了由 SAP 组成的表达标签文库,其净电荷(从+1 到+20)不同。该文库的效率通过聚半乳糖醛酸裂解酶(PGL)、脂氧合酶(LOX)、L-天冬酰胺酶(ASN)和转谷氨酰胺酶(MTG)进行了验证。为了加速初步筛选,每种酶都在 C 端与 GFP 融合。在这四种酶融合中,净电荷为+2-+6 的 SAP 最适合蛋白质表达。最后,文库的应用使 PGL、LOX、ASN 和 MTG 的表达分别提高了 8.3、3.5、2.64 和 3.68 倍。
这是第一个研究 SAP 作为表达标签以增强重组酶生产的关键因素的报告。SAP 文库可用作新型即插即用的蛋白质工程方法,用于筛选具有增强生产能力的酶或蛋白质。