Park Yunjeong, Shin Jonghyeok, Yang Jinkyeong, Kim Hooyeon, Jung Younghun, Oh Hyunseok, Kim Yongjoon, Hwang Jaehyeon, Park Myeongseo, Ban Choongjin, Jeong Ki Jun, Kim Sun-Ki, Kweon Dae-Hyuk
Department of Integrative Biotechnology, College of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon-si, South Korea.
Institute of Biomolecule Control, Sungkyunkwan University, Suwon-si, South Korea.
Front Bioeng Biotechnol. 2020 Jan 10;7:444. doi: 10.3389/fbioe.2019.00444. eCollection 2019.
Recombinant whole-cell biocatalysts are widely used for biotransformation of valuable products. However, some key enzymes involved in biotransformation processes are unstable and cannot be easily expressed in the functional form. In this study, we describe a versatile platform for enzyme stabilization inside the cell: Intracellularly Immobilized Enzyme System (IIES). A 1,2-fucosyltransferase from (PsFL) and a 1,3-fucosyltransferase from (HpFL), chosen as model proteins, were fused with Oct-1 DNA-binding domain, which mediated the formation of a plasmid-protein complex. Oct-1 fusion enabled both soluble and stable expression of recombinant proteins in the cytoplasm because the fusion proteins were stabilized on the plasmid like immobilized enzymes bound to solid surface. As a result, Oct-1-fusion proteins exhibited significantly greater product titer and yield than non-fusion proteins. Use of fusion proteins PsFL-Oct-1 with C-terminal Oct-1 and Oct-1-PsFL with N-terminal Oct-1 resulted in ~3- and ~2-fold higher 2'-fucosyllactose titers, respectively, than with the use of PsFL alone. When Oct-1 was fused to HpFL, which requires dimerization through heptad repeats, almost two times more 3-fucosyllactose was produced. Fucosyllactose has been used as a food additive because it has various beneficial effects on human health. We anticipate that IIES using Oct-1 fusion protein developed in this study can be applied to stabilize other unstable enzymes.
重组全细胞生物催化剂被广泛用于有价值产品的生物转化。然而,一些参与生物转化过程的关键酶不稳定,且难以以功能形式表达。在本研究中,我们描述了一种用于细胞内酶稳定化的通用平台:细胞内固定化酶系统(IIES)。选择来自[具体来源1]的1,2-岩藻糖基转移酶(PsFL)和来自[具体来源2]的1,3-岩藻糖基转移酶(HpFL)作为模型蛋白,将它们与Oct-1 DNA结合结构域融合,该结构域介导了质粒-蛋白复合物的形成。Oct-1融合使得重组蛋白在细胞质中能够可溶性且稳定地表达,因为融合蛋白像固定在固体表面的酶一样在质粒上得到稳定。结果,Oct-1融合蛋白比非融合蛋白表现出显著更高的产物滴度和产量。使用C端带有Oct-1的融合蛋白PsFL-Oct-1和N端带有Oct-1的融合蛋白Oct-1-PsFL,分别比单独使用PsFL产生的2'-岩藻糖基乳糖滴度高约3倍和约2倍。当Oct-1与需要通过七肽重复进行二聚化的HpFL融合时,产生的3-岩藻糖基乳糖几乎多了一倍。岩藻糖基乳糖已被用作食品添加剂,因为它对人类健康有多种有益作用。我们预计,本研究中使用Oct-1融合蛋白开发的IIES可用于稳定其他不稳定的酶。