Zhao Chun-Xia, Dwyer Mirjana Dimitrijev, Yu Alice Lei, Wu Yang, Fang Sheng, Middelberg Anton P J
The University of Queensland, Australian Institute for Bioengineering and Nanotechnology, St. Lucia, QLD 4072, Australia.
Biotechnol Bioeng. 2015 May;112(5):957-64. doi: 10.1002/bit.25505. Epub 2015 Jan 2.
Antimicrobial peptides, as a new class of antibiotics, have generated tremendous interest as potential alternatives to classical antibiotics. However, the large-scale production of antimicrobial peptides remains a significant challenge. This paper reports a simple and low-cost chromatography-free platform technology for producing antimicrobial peptides in Escherichia coli (E. coli). A fusion protein comprising a variant of the helical biosurfactant protein DAMP4 and the known antimicrobial peptide pexiganan is designed by joining the two polypeptides, at the DNA level, via an acid-sensitive cleavage site. The resulting DAMP4(var)-pexiganan fusion protein expresses at high level and solubility in recombinant E. coli, and a simple heat-purification method was applied to disrupt cells and deliver high-purity DAMP4(var)-pexiganan protein. Simple acid cleavage successfully separated the DAMP4 variant protein and the antimicrobial peptide. Antimicrobial activity tests confirmed that the bio-produced antimicrobial peptide has the same antimicrobial activity as the equivalent product made by conventional chemical peptide synthesis. This simple and low-cost platform technology can be easily adapted to produce other valuable peptide products, and opens a new manufacturing approach for producing antimicrobial peptides at large scale using the tools and approaches of biochemical engineering.
抗菌肽作为一类新型抗生素,作为传统抗生素的潜在替代品已引起了极大的关注。然而,抗菌肽的大规模生产仍然是一项重大挑战。本文报道了一种简单且低成本的无色谱平台技术,用于在大肠杆菌(E. coli)中生产抗菌肽。通过在DNA水平上经由酸敏感切割位点连接两种多肽,设计了一种包含螺旋生物表面活性剂蛋白DAMP4变体和已知抗菌肽pexiganan的融合蛋白。所得的DAMP4(var)-pexiganan融合蛋白在重组大肠杆菌中高水平表达且具有溶解性,并采用一种简单的热纯化方法来裂解细胞并获得高纯度的DAMP4(var)-pexiganan蛋白。简单的酸切割成功地分离出DAMP4变体蛋白和抗菌肽。抗菌活性测试证实,生物生产的抗菌肽与通过传统化学肽合成制备的等效产品具有相同的抗菌活性。这种简单且低成本的平台技术可以很容易地用于生产其他有价值的肽产品,并为利用生化工程的工具和方法大规模生产抗菌肽开辟了一种新的制造方法。