Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Department of Microbiology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Int J Mol Sci. 2022 Sep 2;23(17):10044. doi: 10.3390/ijms231710044.
Secretion efficiency of heterologous proteins in the Generally Regarded As Safe (GRAS) is often reported to be insufficiently low due to limitations such as poor targeting and translocation by the signal peptide or degradation by the host proteases. In this study, the secretion efficiency in the host was enhanced through the utilization of a heterologous signal peptide (SP) SPK1 of . The SPK1 was subjected to site-directed mutations targeting its tripartite N-, H-, and C-domains, and the effect on secretion efficiency as compared to the wild-type SPK1 and native lactococcal USP45 was determined on a reporter nuclease (NUC) of . A Fluorescence Resonance Energy Transfer (FRET) analysis indicated that four out of eight SPK1 variants successfully enhanced the secretion of NUC, with the best mutant, SPKM19, showing elevated secretion efficiency up to 88% (or by 1.4-fold) and an improved secretion activity yield of 0.292 ± 0.122 U/mL (or by 1.7-fold) compared to the wild-type SPK1. Modifications of the SPK1 at the cleavage site C-domain region had successfully augmented the secretion efficiency. Meanwhile, mutations in the H-domain region had resulted in a detrimental effect on the NUC secretion. The development of heterologous SPs with better efficacy than the USP45 has been demonstrated in this study for enhanced secretion of heterologous production and mucosal delivery applications in the lactococcal host.
由于信号肽靶向和易位不良或宿主蛋白酶降解等限制,通常报道普遍认为安全(GRAS)的异源蛋白的分泌效率不够低。在这项研究中,通过利用异源信号肽(SP)来增强宿主中的分泌效率。对 SPK1 的三部分 N-、H-和 C-结构域进行了定点突变,将其与野生型 SPK1 和天然乳球菌 USP45 进行了比较,以确定对报告核酸酶(NUC)的分泌效率。荧光共振能量转移(FRET)分析表明,SPK1 的八个变体中有四个成功增强了 NUC 的分泌,最佳突变体 SPKM19 的分泌效率提高了 88%(或 1.4 倍),分泌活性产率提高了 0.292 ± 0.122 U/mL(或 1.7 倍)与野生型 SPK1 相比。在切割位点 C-结构域区域对 SPK1 的修饰成功地提高了分泌效率。同时,H-结构域的突变对 NUC 的分泌产生了不利影响。本研究成功开发了比 USP45 更有效的异源 SP,用于增强乳球菌宿主中异源生产和粘膜传递的应用。