Liao Lizhi, Huang Hao, Wang Yang, Du Guocheng, Kang Zhen
The Science Center for Future Foods, Jiangnan University, Wuxi 214122, China.
The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China.
Eng Microbiol. 2023 Apr 5;3(4):100086. doi: 10.1016/j.engmic.2023.100086. eCollection 2023 Dec.
Leech hyaluronidase (LHyal) is a hyperactive hyaluronic acid (HA) hydrolase that belongs to the hyaluronoglucuronidase family. Traditionally, LHyal is extracted from the heads of leeches, but the recent development of the recombinant LHyal expression method permitted the industrial production of size-specific HA oligosaccharides. However, at present LHyal expressed by recombinant yeast strains requires laborious protein purification steps. Moreover, the enzyme is deactivated and removed after single use. To solve this problem, we developed a recyclable LHyal biocatalyst using a yeast surface display (YSD) system. After screening and characterization, we found that the cell wall protein Sed1p displayed stronger anchoring to the cell wall than other cell wall proteins. By optimizing the type and length of the linkers between LHyal and Sed1p, we increased the activity of enzymes displayed on the cell wall by 50.34% in flask cultures. LHyal-(GGGS)-Sed1p activity further increased to 3.58 × 10 U mL in fed-batch cultivation in a 5 L bioreactor. Enzymatic property analysis results revealed that the displayed LHyal-(GGGS)-Sed1p generated the same oligosaccharides but exhibited higher thermal stability than free LHyal enzyme. Moreover, displayed LHyal-(GGGS)-Sed1p could be recovered easily from HA hydrolysis solutions via low-speed centrifugation and could be reused at least 5 times. YSD of LHyal not only increased the utilization efficiency of the enzyme but also simplified the purification process for HA oligosaccharides. Thus, this study provides an alternative approach for the industrial preparation of LHyal and HA oligosaccharides.
水蛭透明质酸酶(LHyal)是一种活性过高的透明质酸(HA)水解酶,属于透明质酸葡萄糖醛酸酶家族。传统上,LHyal是从水蛭头部提取的,但重组LHyal表达方法的最新发展使得特定大小的HA寡糖能够进行工业化生产。然而,目前重组酵母菌株表达的LHyal需要繁琐的蛋白质纯化步骤。此外,该酶在单次使用后会失活并被去除。为了解决这个问题,我们利用酵母表面展示(YSD)系统开发了一种可回收的LHyal生物催化剂。经过筛选和表征,我们发现细胞壁蛋白Sed1p对细胞壁的锚定作用比其他细胞壁蛋白更强。通过优化LHyal和Sed1p之间接头的类型和长度,我们在摇瓶培养中将细胞壁上展示的酶的活性提高了50.34%。在5L生物反应器的分批补料培养中,LHyal-(GGGS)-Sed1p的活性进一步提高到3.58×10 U/mL。酶学性质分析结果表明,展示的LHyal-(GGGS)-Sed1p产生的寡糖相同,但热稳定性比游离LHyal酶更高。此外,展示的LHyal-(GGGS)-Sed1p可以通过低速离心从HA水解溶液中轻松回收,并且可以重复使用至少5次。LHyal的YSD不仅提高了酶的利用效率,还简化了HA寡糖的纯化过程。因此,本研究为LHyal和HA寡糖的工业化制备提供了一种替代方法。