Migal-Galilee Research Institute, Kiryat Shmona, Israel.
The Azrieli Faculty of Medicine, Bar Ilan University, Safed, Israel.
Biotechnol J. 2024 Jul;19(7):e2400021. doi: 10.1002/biot.202400021.
Enzyme-mediated polyethylene terephthalate (PET) depolymerization has recently emerged as a sustainable solution for PET recycling. Towards an industrial-scale implementation of this technology, various strategies are being explored to enhance PET depolymerization (PETase) activity and improve enzyme stability, expression, and purification processes. Recently, rational engineering of a known PET hydrolase (LCC-leaf compost cutinase) has resulted in the isolation of a variant harboring four-point mutations (LCC-ICCG), presenting increased PETase activity and thermal stability. Here, we revealed the enzyme's natural extracellular expression and used it to efficiently screen error-prone genetic libraries based on LCC-ICCG for enhanced activity toward consumer-grade PET. Following multiple rounds of mutagenesis and screening, we successfully isolated variants that exhibited up to a 60% increase in PETase activity. Among other mutations, the improved variants showed a histidine to tyrosine substitution at position 218, a residue known to be involved in substrate binding and stabilization. Introducing H218Y mutation on the background of LCC-ICCG (named here LCC-ICCG/H218Y) resulted in a similar level of activity improvement. Analysis of the solved structure of LCC-ICCG/H218Y compared to other known PETases featuring different amino acids at the equivalent position suggests that H218Y substitution promotes enhanced PETase activity. The expression and screening processes developed in this study can be further used to optimize additional enzymatic parameters crucial for efficient enzymatic degradation of consumer-grade PET.
酶介导的聚对苯二甲酸乙二醇酯(PET)解聚最近作为一种可持续的 PET 回收解决方案而出现。为了在工业规模上实施这项技术,正在探索各种策略来提高 PET 解聚酶(PETase)的活性并提高酶的稳定性、表达和纯化过程。最近,对一种已知的 PET 水解酶(LCC-叶堆腐殖质角质酶)进行了合理的工程改造,分离出一种含有四点突变的变体(LCC-ICCG),表现出更高的 PETase 活性和热稳定性。在这里,我们揭示了酶的天然细胞外表达,并利用它来有效地筛选基于 LCC-ICCG 的易错遗传文库,以提高对消费级 PET 的活性。经过多轮诱变和筛选,我们成功分离到了活性提高了 60%的变体。除了其他突变外,改进的变体在 218 位显示出组氨酸到酪氨酸的取代,该残基已知参与底物结合和稳定。在 LCC-ICCG 的背景下引入 H218Y 突变(在此命名为 LCC-ICCG/H218Y)导致了类似水平的活性提高。与具有不同氨基酸的其他已知 PETase 相比,对 LCC-ICCG/H218Y 结构的分析表明,H218Y 取代促进了 PETase 活性的提高。本研究中开发的表达和筛选过程可以进一步用于优化对消费级 PET 进行有效酶降解至关重要的其他酶学参数。