Kim Ha-Kun, Chun Dae-Sik, Kim Joon-Sik, Yun Cheol-Ho, Lee Ju-Hoon, Hong Soon-Kwang, Kang Dae-Kyung
Department of Genetic Engineering, PaiChai University, 439-6, Doma-dong, Seo-ku, Daejon, 302-735, South Korea.
Appl Microbiol Biotechnol. 2006 Sep;72(2):330-8. doi: 10.1007/s00253-005-0266-5. Epub 2006 Jan 19.
Direct expression of lactoferricin, an antimicrobial peptide, is lethal to Escherichia coli. For the efficient production of lactoferricin in E. coli, we developed an expression system in which the gene for the lysine- and arginine-rich cationic lactoferricin was fused to an anionic peptide gene to neutralize the basic property of lactoferricin, and successfully overexpressed the concatemeric fusion gene in E. coli. The lactoferricin gene was linked to a modified magainin intervening sequence gene by a recombinational polymerase chain reaction, thus producing an acidic peptide-lactoferricin fusion gene. The monomeric acidic peptide-lactoferricin fusion gene was multimerized and expressed in E. coli BL21(DE3) upon induction with isopropyl-beta-D-thiogalactopyranoside. The expression levels of the fusion peptide reached the maximum at the tetramer, while further increases in the copy number of the fusion gene substantially reduced the peptide expression level. The fusion peptides were isolated and cleaved to generate the separate lactoferricin and acidic peptide. About 60 mg of pure recombinant lactoferricin was obtained from 1 L of E. coli culture. The purified recombinant lactoferricin was found to have a molecular weight similar to that of chemically synthesized lactoferricin. The recombinant lactoferricin showed antimicrobial activity and disrupted bacterial membrane permeability, as the native lactoferricin peptide does.
抗菌肽乳铁传递蛋白(lactoferricin)的直接表达对大肠杆菌具有致死性。为了在大肠杆菌中高效生产乳铁传递蛋白,我们开发了一种表达系统,其中富含赖氨酸和精氨酸的阳离子乳铁传递蛋白基因与阴离子肽基因融合,以中和乳铁传递蛋白的碱性特性,并成功在大肠杆菌中过表达串联融合基因。通过重组聚合酶链反应将乳铁传递蛋白基因与修饰的蛙皮素(magainin)间隔序列基因连接,从而产生酸性肽 - 乳铁传递蛋白融合基因。单体酸性肽 - 乳铁传递蛋白融合基因经多聚化后,在用异丙基 -β -D -硫代半乳糖苷诱导时在大肠杆菌BL21(DE3)中表达。融合肽的表达水平在四聚体时达到最高,而融合基因拷贝数的进一步增加则大幅降低了肽的表达水平。分离并切割融合肽以产生单独的乳铁传递蛋白和酸性肽。从1升大肠杆菌培养物中获得了约60毫克的纯重组乳铁传递蛋白。发现纯化的重组乳铁传递蛋白的分子量与化学合成的乳铁传递蛋白相似。重组乳铁传递蛋白表现出抗菌活性,并像天然乳铁传递蛋白肽一样破坏细菌膜通透性。