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用于增强PET降解的PET水解酶的计算机辅助位点特异性聚乙二醇化

Computer-Aided Site-Specific PEGylation of PET Hydrolases for Enhanced PET Degradation.

作者信息

Qu Zhi, Sun Yan

机构信息

Department of Biochemical Engineering, School of Chemical Engineering and Technology and Key Laboratory of Systems Bioengineering and Frontiers Science Center for Synthetic Biology (Ministry of Education), Tianjin University, Tianjin 300350, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 7. doi: 10.1021/acsami.4c12187.

Abstract

The enormous accumulation of poly(ethylene terephthalate) (PET) waste has posed a serious threat to the environment and human health, and biodegradation with PET hydrolase (PETase) can be a possible solution. Herein, we propose site-specifically modifying PETase with amphiphilic polymers to improve the enzyme performance at ambient temperature. For this purpose, we devise a computer-aided strategy to prioritize the conjugation site, and polyethylene glycol (PEG) preparations of 0.55 to 10 kDa are site-specifically conjugated to PETase. The most active conjugate PETase-PEG 5k (PETase-5K) shows an increase of melting temperature (3.88 °C) and significantly improves PET degradation performance (3.5- and 3.1-fold increases at 30 and 40 °C, respectively). Experimental investigation and molecular dynamics simulations reveal that the site-specific PEGylation increases the hydrophobic solvent-accessible surface area and the binding capability to the PET surface, thickens the hydration layer, increases the intramolecular hydrogen bonding, reduces the interactions between water and the conjugated enzyme surface, and rigidifies the enzyme structure via hydrogen bonding and hydrophobic interactions between the polymer and the enzyme, thus leading to improved enzymatic performance of PETase-5K. We further validate the versatility of the site-specific PEGylation in one of the most evolved variants of PETase, FAST-PETase, by 1.8-fold improvement in PET degradation at 30 °C. The presented computer-aided site-specific conjugation strategy has opened a new avenue to enhancing PETase performance at ambient temperature, and the contribution of PEGylation to PETase unraveled in this work laid a foundation for the rational engineering of PET hydrolases.

摘要

聚对苯二甲酸乙二酯(PET)废弃物的大量积累对环境和人类健康构成了严重威胁,而利用PET水解酶(PETase)进行生物降解可能是一种解决方案。在此,我们提出用两亲性聚合物对PETase进行位点特异性修饰,以提高其在环境温度下的酶性能。为此,我们设计了一种计算机辅助策略来确定共轭位点的优先级,并将0.55至10 kDa的聚乙二醇(PEG)制剂位点特异性地共轭到PETase上。活性最高的共轭物PETase-PEG 5k(PETase-5K)的熔化温度升高(3.88°C),并显著提高了PET降解性能(在30°C和40°C时分别提高了3.5倍和3.1倍)。实验研究和分子动力学模拟表明,位点特异性聚乙二醇化增加了疏水溶剂可及表面积和与PET表面的结合能力,加厚了水化层,增加了分子内氢键,减少了水与共轭酶表面之间的相互作用,并通过聚合物与酶之间的氢键和疏水相互作用使酶结构刚性化,从而导致PETase-5K的酶性能得到改善。我们进一步通过在30°C下PET降解提高1.8倍,验证了位点特异性聚乙二醇化在PETase最进化的变体之一FAST-PETase中的通用性。所提出的计算机辅助位点特异性共轭策略为提高PETase在环境温度下的性能开辟了一条新途径,并且这项工作中揭示的聚乙二醇化对PETase的贡献为PET水解酶的合理工程设计奠定了基础。

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