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作为反应条件、底物性质和产物积累函数的PETase的比较性能。

Comparative Performance of PETase as a Function of Reaction Conditions, Substrate Properties, and Product Accumulation.

作者信息

Erickson Erika, Shakespeare Thomas J, Bratti Felicia, Buss Bonnie L, Graham Rosie, Hawkins McKenzie A, König Gerhard, Michener William E, Miscall Joel, Ramirez Kelsey J, Rorrer Nicholas A, Zahn Michael, Pickford Andrew R, McGeehan John E, Beckham Gregg T

机构信息

Renewable Resources and Enabling Sciences Center, National Renewable Energy Laboratory, Golden, CO 80401, United States.

BOTTLE Consortium, Golden, CO 80401, United States.

出版信息

ChemSusChem. 2022 Jan 10;15(1):e202101932. doi: 10.1002/cssc.202101932. Epub 2021 Nov 5.

Abstract

There is keen interest to develop new technologies to recycle the plastic poly(ethylene terephthalate) (PET). To this end, the use of PET-hydrolyzing enzymes has shown promise for PET deconstruction to its monomers, terephthalate (TPA) and ethylene glycol (EG). Here, the Ideonella sakaiensis PETase wild-type enzyme was compared to a previously reported improved variant (W159H/S238F). The thermostability of each enzyme was compared and a 1.45 Å resolution structure of the mutant was described, highlighting changes in the substrate binding cleft compared to the wild-type enzyme. Subsequently, the performance of the wild-type and variant enzyme was compared as a function of temperature, substrate morphology, and reaction mixture composition. These studies showed that reaction temperature had the strongest influence on performance between the two enzymes. It was also shown that both enzymes achieved higher levels of PET conversion for substrates with moderate crystallinity relative to amorphous substrates. Finally, the impact of product accumulation on reaction progress was assessed for the hydrolysis of both PET and bis(2-hydroxyethyl) terephthalate (BHET). Each enzyme displayed different inhibition profiles to mono(2-hydroxyethyl) terephthalate (MHET) and TPA, while both were sensitive to inhibition by EG. Overall, this study highlights the importance of reaction conditions, substrate selection, and product accumulation for catalytic performance of PET-hydrolyzing enzymes, which have implications for enzyme screening in the development of enzyme-based polyester recycling.

摘要

人们对开发回收聚对苯二甲酸乙二酯(PET)塑料的新技术有着浓厚兴趣。为此,使用PET水解酶已显示出将PET解构为其单体对苯二甲酸(TPA)和乙二醇(EG)的潜力。在此,将食酸戴尔福特菌PET酶野生型与先前报道的改良变体(W159H/S238F)进行了比较。比较了每种酶的热稳定性,并描述了该突变体分辨率为1.45 Å的结构,突出了与野生型酶相比底物结合裂隙的变化。随后,比较了野生型和变体酶在温度、底物形态和反应混合物组成方面的性能。这些研究表明,反应温度对两种酶的性能影响最大。研究还表明,相对于无定形底物,两种酶对具有中等结晶度的底物都能实现更高水平的PET转化率。最后,评估了产物积累对PET和对苯二甲酸双(2-羟乙酯)(BHET)水解反应进程的影响。每种酶对单(2-羟乙基)对苯二甲酸酯(MHET)和TPA表现出不同的抑制曲线,而两者对EG抑制都很敏感。总体而言,本研究强调了反应条件、底物选择和产物积累对PET水解酶催化性能的重要性,这对基于酶的聚酯回收开发中的酶筛选具有重要意义。

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