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Functional characterization and structural modeling of synthetic polyester-degrading hydrolases from Thermomonospora curvata

机译:弯曲热单孢菌的合成聚酯降解水解酶的功能表征和结构建模

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摘要

Thermomonospora curvata is a thermophilic actinomycete phylogenetically related to Thermobifida fusca that produces extracellular hydrolases capable of degrading synthetic polyesters. Analysis of the genome of T. curvata DSM43183 revealed two genes coding for putative polyester hydrolases Tcur1278 and Tcur0390 sharing 61% sequence identity with the T. fusca enzymes. Mature proteins of Tcur1278 and Tcur0390 were cloned and expressed in Escherichia coli TOP10. Tcur1278 and Tcur0390 exhibited an optimal reaction temperature against p-nitrophenyl butyrate at 60°C and 55°C, respectively. The optimal pH for both enzymes was determined at pH?8.5. Tcur1278 retained more than 80% and Tcur0390 less than 10% of their initial activity following incubation for 60?min at 55°C. Tcur0390 showed a higher hydrolytic activity against poly(ε-caprolactone) and polyethylene terephthalate (PET) nanoparticles compared to Tcur1278 at reaction temperatures up to 50°C. At 55°C and 60°C, hydrolytic activity against PET nanoparticles was only detected with Tcur1278. In silico modeling of the polyester hydrolases and docking with a model substrate composed of two repeating units of PET revealed the typical fold of α/β serine hydrolases with an exposed catalytic triad. Molecular dynamics simulations confirmed the superior thermal stability of Tcur1278 considered as the main reason for its higher hydrolytic activity on PET.
机译:弯曲热单孢菌是与嗜热栖热菌有亲缘关系的嗜热放线菌,其产生能够降解合成聚酯的细胞外水解酶。 T.curvata DSM43183基因组的分析揭示了两个编码假定的聚酯水解酶Tcur1278和Tcur0390的基因,它们与T.fusca酶共有61%的序列同一性。克隆了Tcur1278和Tcur0390的成熟蛋白,并在大肠杆菌TOP10中表达。 Tcur1278和Tcur0390分别在60°C和55°C的温度下对对硝基苯基丁酸酯表现出最佳反应温度。确定两种酶的最佳pH为pH≥8.5。在55°C孵育60分钟后,Tcur1278保留了其初始活性的80%以上,而Tcur0390保留了其初始活性的10%以下。在最高50°C的反应温度下,与Tcur1278相比,Tcur0390对聚(ε-己内酯)和聚对苯二甲酸乙二醇酯(PET)纳米颗粒具有更高的水解活性。在55°C和60°C下,仅用Tcur1278检测到对PET纳米颗粒的水解活性。在聚酯水解酶的计算机模拟中,与由两个重复单元的PET组成的模型底物对接,揭示了具有暴露的催化三元组的α/β丝氨酸水解酶的典型折叠。分子动力学模拟证实了Tcur1278优异的热稳定性,被认为是Tcur1278在PET上具有较高水解活性的主要原因。

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