Department of Microbiology, University of Helsinki, PO Box 56, FI-00014 Helsinki, Finland.
FEMS Microbiol Lett. 2024 Jan 9;371. doi: 10.1093/femsle/fnae065.
The wild-type Lactococcus lactis strain LAC460 produces two bacteriocin-like phage lysins, LysL and LysP. This study aimed to produce and secrete LysL in various heterologous hosts and an in vitro cell-free expression system for further functional studies. Initially, the lysL gene from L. lactis LAC460 was cloned into Lactococcus cremoris NZ9000 and L. lactis N8 strains, with and without the usp45 signal sequence (SSusp45), under a nisin-inducible promoter. Active LysL was primarily produced intracellularly in recombinant L. lactis N8, with some secretion into the supernatant. Recombinant L. cremoris NZ9000 lysed upon nisin induction, indicating successful lysL expression. However, fusion with Usp45 signal peptide (SPUsp45-LysL) weakened LysL activity, likely due to incomplete signal peptide cleavage during secretion. Active LysL was also produced in vitro, and analysed in SDS-PAGE, giving a 42-kDa band. However, the yield of LysL protein was still low when produced from recombinant lactococci or by in vitro expression system. Therefore, His-tagged LysL was produced in Escherichia coli BL21(DE3). Western blot confirmed the intracellular production of about 44-kDa His-tagged LysL in E. coli. His-tagged active LysL was then purified by Ni-NTA affinity chromatography yielding sufficient 4.34 mg of protein to be used in future functional studies.
野生型乳球菌 LAC460 产生两种细菌素样噬菌体溶菌酶,LysL 和 LysP。本研究旨在在各种异源宿主和体外无细胞表达系统中生产和分泌 LysL,以进行进一步的功能研究。最初,从乳球菌 LAC460 克隆 LysL 基因到乳球菌乳脂亚种 NZ9000 和乳球菌 N8 菌株中,带有和不带有usp45 信号序列(SSusp45),在乳链菌肽诱导启动子的控制下。重组乳球菌 N8 主要在细胞内产生有活性的 LysL,有些分泌到上清液中。重组乳球菌乳脂亚种 NZ9000 在乳链菌肽诱导下裂解,表明 LysL 表达成功。然而,与 Usp45 信号肽(SPUsp45-LysL)融合削弱了 LysL 的活性,可能是由于分泌过程中不完全的信号肽切割。也在体外产生了有活性的 LysL,并在 SDS-PAGE 中进行了分析,得到了 42 kDa 的条带。然而,当从重组乳球菌或体外表达系统生产时,LysL 蛋白的产量仍然很低。因此,在大肠杆菌 BL21(DE3)中生产了 His 标记的 LysL。Western blot 证实了大肠杆菌中约 44 kDa His 标记的 LysL 的细胞内产生。然后通过 Ni-NTA 亲和层析纯化 His 标记的活性 LysL,得到足够的 4.34 mg 蛋白质用于未来的功能研究。