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对来源于. 的聚氨酯酯酶 A(PueA)的作用机制的计算研究

Computational study of the mechanism of a polyurethane esterase A (PueA) from .

机构信息

BioComp Group, Institute of Advanced Materials (INAM), Universitat Jaume I, 12071 Castellón, Spain.

出版信息

Faraday Discuss. 2024 Sep 11;252(0):323-340. doi: 10.1039/d4fd00022f.

Abstract

The effective management of plastic waste has become a global imperative, given our reliance on a linear model in which plastics are manufactured, used once, and then discarded. This has led to the pervasive accumulation of plastic debris in landfills and environmental contamination. Recognizing this issue, numerous initiatives are underway to address the environmental repercussions associated with plastic disposal. In this study, we investigate the possible molecular mechanism of polyurethane esterase A (PueA), which has been previously identified as responsible for the degradation of a polyester polyurethane (PU) sample in , as an effort to develop enzymatic biodegradation solutions. After generating the unsolved 3D structure of the protein by AlphaFold2 from its known genome, the enzymatic hydrolysis of the same model PU compound previously used in experiments has been explored employing QM/MM molecular dynamics simulations. This required a preliminary analysis of the 3D structure of the apo-enzyme, identifying the putative active site, and the search for the optimal protein-substrate binding site. Finally, the resulting free energy landscape indicates that wild-type PueA can degrade PU chains, although with low-level activity. The reaction takes place by a characteristic four-step path of the serine hydrolases, involving an acylation followed by a diacylation step. Energetics and structural analysis of the evolution of the active site along the reaction suggests that PueA can be considered a promising protein scaffold for further development to achieve efficient biodegradation of PU.

摘要

有效管理塑料废物已成为当务之急,因为我们依赖于线性模式,即塑料被制造、使用一次,然后丢弃。这导致塑料碎片在垃圾填埋场和环境中广泛积累和污染。认识到这个问题,许多倡议正在进行中,以解决与塑料处理相关的环境影响。在这项研究中,我们研究了先前被确定为负责聚酯型聚氨酯 (PU) 样品降解的聚氨酯酯酶 A (PueA) 的可能分子机制,旨在开发酶促生物降解解决方案。通过 AlphaFold2 从其已知基因组生成蛋白质的未解决的 3D 结构后,我们通过 QM/MM 分子动力学模拟探索了相同模型 PU 化合物的酶水解。这需要对脱辅基酶的 3D 结构进行初步分析,确定假定的活性位点,并寻找最佳的蛋白质-底物结合位点。最后,所得的自由能景观表明,野生型 PueA 可以降解 PU 链,尽管活性水平较低。反应通过丝氨酸水解酶的典型四步路径进行,涉及酰化和二酰化步骤。沿着反应的活性位点的演化的能量学和结构分析表明,PueA 可以被认为是进一步开发以实现 PU 有效生物降解的有前途的蛋白质支架。

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