The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Lihu Road, Wuxi, 214122, Jiangsu, China.
The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.
Appl Microbiol Biotechnol. 2020 Feb;104(4):1621-1632. doi: 10.1007/s00253-019-10282-7. Epub 2020 Jan 7.
Hyaluronidases that break down hyaluronan are widely used for preparation of low molecular weight hyaluronan. Leech hyaluronidase (LHyal) is a newly discovered hyaluronidase with outstanding enzymatic properties. The Pichia pastoris expression system of LHyal that depends on AOX1 promoter (P) has been constructed. However, the addition of the toxic inducer methanol is a big safety concern. Here, a combinational strategy was adopted for constitutive expression of LHyal to high level in P. pastoris. By optimizing the combination of promoters P, P, and P and signal peptides α-factor, nsB, and sp23, the enzyme activity of extracellular LHyal reached 1.38 × 10 U/mL in shake flasks. N-terminal engineering with neutral polar amino acids further increased LHyal activity to 2.06 × 10 U/mL. In addition, the impact of overexpressing transcription factors Aft1, Gal4-like, and Yap1 on LHyal production was also investigated. We found the co-expression of Aft1 significantly enhanced the expression of LHyal to 3.03 × 10 U/mL. Finally, LHyal activity of 2.12 × 10 U/mL was achieved in a 3-L fermenter, with a high productivity of 1.96 × 10 U/mL/h. The engineered LHyal-producing Pichia pastoris strains will be more attractive for production of hyaluronidase on industrial scale.
透明质酸酶可将透明质酸分解,广泛用于制备低分子量透明质酸。水蛭透明质酸酶(LHyal)是一种新发现的具有优异酶学特性的透明质酸酶。构建了依赖 AOX1 启动子(P)的毕赤酵母 LHyal 表达系统。然而,添加有毒诱导剂甲醇是一个很大的安全隐患。在这里,采用组合策略在毕赤酵母中实现 LHyal 的组成型高水平表达。通过优化 P、P 和 P 启动子与 α-因子、nsB 和 sp23 信号肽的组合,摇瓶中外源 LHyal 的酶活达到 1.38×10 U/mL。N 端工程中添加中性极性氨基酸可使 LHyal 酶活进一步提高到 2.06×10 U/mL。此外,还研究了过量表达转录因子 Aft1、Gal4 样和 Yap1 对 LHyal 产生的影响。结果发现,共表达 Aft1 可显著提高 LHyal 的表达水平,达到 3.03×10 U/mL。最终,在 3-L 发酵罐中实现了 2.12×10 U/mL 的 LHyal 酶活,比生产能力达到 1.96×10 U/mL/h。工程化的 LHyal 毕赤酵母菌株将更具吸引力,可用于工业规模生产透明质酸酶。