Department of Chemistry, University of Alberta, Edmonton, Alberta, Canada.
Department of Chemistry, The King's University, Edmonton, Alberta, Canada.
Protein Sci. 2022 May;31(5):e4316. doi: 10.1002/pro.4316.
Recombinant peptide production in Escherichia coli is often accomplished through cloning and expression of a fusion protein. The fusion protein partner generally has two requirements: (a) it contains an affinity tag to assist with purification and (b) it can be cleaved off to leave only the desired peptide sequence behind. Common soluble fusion partners include small ubiquitin-like modifier protein (SUMO), maltose-binding protein (MBP), glutathione S-transferase (GST), or intein proteins. However, heterologously expressed peptides can suffer from proteolytic degradation or instability. This degradation can pose a major issue for applications requiring a large amount of purified peptide, such as NMR structural assignments or biochemical assays. Improving peptide yield by testing various expression and isolation conditions requires a significant amount of effort and may not lead to improved results. Here, we cloned and expressed four different peptides as SUMO fusion proteins. These peptides (lactococcin A, leucocin A, faerocin MK, neopetrosiamide A) were truncated during expression and isolation as SUMO fusions, resulting in low yields of purified peptide. To prevent this degradation and improve yield, we designed a new expression system to create a "sandwiched" fusion protein of the form: His -SUMO-peptide-intein (SPI). These sandwiched peptides were more stable and protected against degradation, resulting in improved yields (up to 17-fold) under a set of standard expression and isolation procedures. This SPI expression system uses only two commercially available vectors and standard protein purification techniques, and therefore may offer an economical and facile route to improve yields for peptides that undergo degradation.
在大肠杆菌中生产重组肽通常通过克隆和表达融合蛋白来完成。融合蛋白伴侣通常有两个要求:(a) 它含有亲和标签,以协助纯化;(b) 它可以被切割下来,只留下所需的肽序列。常见的可溶性融合伴侣包括小泛素样修饰蛋白 (SUMO)、麦芽糖结合蛋白 (MBP)、谷胱甘肽 S-转移酶 (GST) 或内含肽蛋白。然而,异源表达的肽可能会遭受蛋白水解降解或不稳定。这种降解可能会对需要大量纯化肽的应用产生重大问题,例如 NMR 结构分配或生化测定。通过测试各种表达和分离条件来提高肽产量需要大量的努力,并且可能不会导致改善的结果。在这里,我们将四个不同的肽克隆并表达为 SUMO 融合蛋白。这些肽(乳球菌素 A、亮球菌素 A、faerocin MK、neopetrosiamide A)在表达和分离过程中作为 SUMO 融合物被截断,导致纯化肽的产量低。为了防止这种降解并提高产量,我们设计了一种新的表达系统来创建一种形式的“夹心”融合蛋白:His-SUMO-肽-内含肽 (SPI)。这些夹心肽更稳定,免受降解的影响,在一组标准的表达和分离程序下,产量提高了(高达 17 倍)。这种 SPI 表达系统仅使用两个市售载体和标准蛋白纯化技术,因此可能为经历降解的肽提供提高产量的经济且简便的途径。