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PET水解酶的研究进展 被引量:9
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作者 石利霞 高松枫 朱蕾蕾 《生物技术通报》 CAS CSCD 北大核心 2020年第10期226-236,共11页
聚对苯二甲酸乙二醇酯(PET)是目前广泛使用的塑料之一,其废弃物污染已成为全球性的环境问题之一。PET水解酶可在较温和条件下将PET水解为单体对苯二甲酸和乙二醇,利用酶法降解PET为解决“白色污染”问题提供了一种比较环保的可能性。主... 聚对苯二甲酸乙二醇酯(PET)是目前广泛使用的塑料之一,其废弃物污染已成为全球性的环境问题之一。PET水解酶可在较温和条件下将PET水解为单体对苯二甲酸和乙二醇,利用酶法降解PET为解决“白色污染”问题提供了一种比较环保的可能性。主要从三维结构,催化机制及降解能力这3方面对4种PET水解酶:角质酶、PETase、脂肪酶及MHETase进行梳理总结,重点阐述了角质酶和PETase的分子改造进展,并对实现PET废弃物高效酶法降解的关键科学问题进行了展望,以期为开发更加高效的PET水解酶提供参考依据。 展开更多
关键词 聚对苯二甲酸乙二醇酯 角质酶 PETase 脂肪酶 mhetase 催化机制 蛋白质工程
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对苯二甲酸单羟乙酯水解酶结构与功能的研究进展 被引量:4
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作者 杨媚媛 樊芳芳 +5 位作者 何灵娟 陈杰 王林泉 邱帅 吕常江 黄俊 《生物工程学报》 CAS CSCD 北大核心 2024年第9期2812-2830,共19页
聚对苯二甲酸乙二醇酯(polyethylene terephthalate,PET)作为目前广泛使用的塑料之一,其废弃物对全球环境造成了严重污染。PET降解酶(polyethylene terephthalate hydrolase,PETase)的发现为处理PET废弃物提供了一种绿色环保的途径。尽... 聚对苯二甲酸乙二醇酯(polyethylene terephthalate,PET)作为目前广泛使用的塑料之一,其废弃物对全球环境造成了严重污染。PET降解酶(polyethylene terephthalate hydrolase,PETase)的发现为处理PET废弃物提供了一种绿色环保的途径。尽管PETase降解PET会产生中间产物,抑制水解酶的进一步降解,影响酶的催化效率,但对苯二甲酸单羟乙酯水解酶[mono(2-hydroxyethyl)terephthalate hydrolase,MHETase]通过与PETase协同作用,将PETase水解产生的中间产物MHET高效降解为乙二醇(ethylene glycol,EG)和对苯二甲酸(terephthalic acid,TPA)。MHETase对MHET表现出极高的特异性,是完全降解PET的关键酶。本文全面梳理了MHETase的三维结构、底物结合模式以及催化反应机理等,介绍了该酶降解活性的结构特征和关键残基,以及酶工程改造的研究进展。同时,对基于MHETase支架结合PETase开发定制的酶促PET降解系统进行了展望,为设计和开发更加高效的PET水解酶体系提供了参考。 展开更多
关键词 聚对苯二甲酸乙二醇酯(PET) 对苯二甲酸单羟乙酯水解酶(mhetase) 双酶系统 塑料降解 生物降解
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Plastic materials and water sources actively select and shape wastewater plastispheres over time
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作者 Yu Xia Xuyang Zhang +4 位作者 Miao Zhang Liming Chen Xiaotong Tang Yuhong Sun Xiang Li 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2022年第11期233-242,共10页
The daily use of plastics presents a serious pollution issue due to their extremely slow degradation.Microplastics and the biofilm that grows on plastics(i.e.,the plastisphere)are important subsets of plastic wastes.M... The daily use of plastics presents a serious pollution issue due to their extremely slow degradation.Microplastics and the biofilm that grows on plastics(i.e.,the plastisphere)are important subsets of plastic wastes.Many studies have been conducted to reveal the structures of the plastispheres,the driving factors for the formation of the plastisphere,and the ability of the plastispheres to degrade plastics in a variety of water bodies.However,the plastispheres related to wastewater are understudied.In this study,we used a microcosmic strategy to study the evolution of the plastispheres associated with microplastics(MPs)over time in wastewater.We found that plastic materials and water sources did not actively select and shape the plastispheres at an early stage,but the active selection for a unique niche of the plastisphere occurred after 14 d of growth.In addition,we confirmed that the alkB gene was densely present,and metagenomics showed some additional chemical reactions,which suggests that MPs are consumed by the microbes in the plastispheres.Additionally,metagenomics identified some metagenome-assembled genomes(MAGs)associated with high-density polyethylene(HDPE)and polyethylene terephthalate(PET).The identification of HDPE-associated MAGs and PET-associated MAGs further supports the notion that the selection for a unique niche of the plastisphere is driven by plastic materials and water sources(in this study,after 14 d of growth).Our discoveries bring new views on the behavior of the wastewater-associated plastisphere,especially how long it takes a wastewater plastisphere to form. 展开更多
关键词 Microplastics Whole-genome metagenomic sequencing Plastisphere Plastic degradation mhetase
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