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Current knowledge on enzymatic PET degradation and its possible application to waste stream management and other fields

机译:目前关于酶促宠物退化的知识及其在废物管理和其他领域的应用应用

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摘要

Enzymatic hydrolysis of polyethylene terephthalate (PET) has been the subject of extensive previous research that can be grouped into two categories, viz. enzymatic surface modification of polyester fibers and management of PET waste by enzymatic hydrolysis. Different enzymes with rather specific properties are required for these two processes. Enzymatic surface modification is possible with several hydrolases, such as lipases, carboxylesterases, cutinases, and proteases. These enzymes should be designated as PET surface-modifying enzymes and should not degrade the building blocks of PET but should hydrolyze the surface polymer chain so that the intensity of PET is not weakened. Conversely, management of PET waste requires substantial degradation of the building blocks of PET; therefore, only a limited number of cutinases have been recognized as PET hydrolases since the first PET hydrolase was discovered by Muller et al. (Macromol Rapid Commun 26:1400-1405, 2005). Here, we introduce current knowledge on enzymatic degradation of PET with a focus on the key class of enzymes, PET hydrolases, pertaining to the definition of enzymatic requirements for PET hydrolysis, structural analyses of PET hydrolases, and the reaction mechanisms. This review gives a deep insight into the structural basis and dynamics of PET hydrolases based on the recent progress in X-ray crystallography. Based on the knowledge accumulated to date, we discuss the potential for PET hydrolysis applications, such as in designing waste stream management.
机译:酶水解的聚对苯二甲酸乙二醇酯(PET)是广泛的先前研究的主题,可以分为两类,viz。酶水解酶促表面改性聚酯纤维和宠物废弃物的管理。对于这两个过程需要具有相当特异性的不同酶。酶表面改性是可能的几种水解酶,例如脂肪酶,羧酸酯,Culinase和蛋白酶。这些酶应该被指定为PET表面改性酶,并且不应降解PET的构建块,但应水解表面聚合物链,使PET的强度不会削弱。相反,宠物浪费的管理需要宠物的构建块的大量退化;因此,由于Muller等人发现了第一PET水解酶,因此只有有限数量的Cutinase被认为是PET水解酶。 (宏莫罗迅速交流26:1400-1405,2005)。在这里,我们介绍了关于PET的酶促劣化的现有知识,重点是酶,PET水解酶的关键类别,pET水解酶的定义,PET水解酶的结构分析以及反应机制。基于X射线晶体学的最近进展,本综述对PET水解酶的结构基础和动态进行了深入洞察。基于迄今累计的知识,我们讨论了宠物水解应用的潜力,例如在设计废物流管理方面。

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