Russian State Collection of Industrial Microorganisms (VKPM), State Research Institute of Genetics and Selection of Industrial Microorganisms, Moscow 117545, Russia.
Appl Microbiol Biotechnol. 2011 Aug;91(3):645-54. doi: 10.1007/s00253-011-3265-8. Epub 2011 Apr 15.
The cell surface display of enzymes is of great interest because of its simplified purification stage and the possibility for recycling in industrial processes. In this study, we have focused on the cell wall immobilization of Yarrowia lipolytica Lip2 protein--an enzyme that has a wide technological application. By genome analysis of Y. lipolytica in addition to already characterized Ylcwp1, we identified five putative open reading frames encoding glycosylphosphatidylinositol-anchored proteins. Lip2 translation fusion with the carboxyl termini of these proteins revealed that all proteins were capable of immobilizing lipase in active form on the cell surface. The highest level of cell-bound lipase activity was achieved using C-domains encoded by YlCWP1, YlCWP3 (YALI0D27214g) and YlCWP6 (YALI0F18282g) comprising 16,173 ± 1,800, 18,785 ± 1,130 and 17,700 ± 2,101 U/g dry cells, respectively. To the best of our knowledge, these results significantly exceed the highest cell-bound lipase activity previously reported for engineered Saccharomyces cerevisiae and Pichia pastoris strains. Furthermore, the lyophilized biomass retained the activity and was robust to collecting/resuspending procedures. Nevertheless, in most cases, a substantial amount of lipase activity was also found in the growth medium. Further work will be necessary to better understand the nature of this phenomenon.
细胞表面展示酶具有简化的纯化阶段和在工业过程中进行回收的可能性,因此引起了广泛关注。在本研究中,我们专注于将脂肪酶 Lip2 蛋白固定在细胞壁上,该酶具有广泛的技术应用。通过对脂肪假丝酵母基因组进行分析,除了已经鉴定的 Ylcwp1 之外,我们还鉴定了五个编码糖基磷脂酰肌醇锚定蛋白的假定开放阅读框。Lip2 翻译融合与这些蛋白质的羧基末端,表明所有蛋白质都能够将脂肪酶以活性形式固定在细胞表面。使用 YlCWP1、YlCWP3(YALI0D27214g)和 YlCWP6(YALI0F18282g)编码的 C 结构域获得了最高的细胞结合脂肪酶活性,分别为 16173±1800、18785±1130 和 17700±2101 U/g 干细胞。据我们所知,这些结果显著超过了先前报道的工程酿酒酵母和巴斯德毕赤酵母菌株的最高细胞结合脂肪酶活性。此外,冻干生物量保留了活性,并且对收集/重悬过程具有鲁棒性。然而,在大多数情况下,生长培养基中也发现了相当大的脂肪酶活性。需要进一步的工作来更好地理解这种现象的本质。