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构建具有碳水化合物结合模块和叶枝堆肥角质酶的融合蛋白以提高对聚对苯二甲酸乙二醇酯的降解效率。

Construction of Fusion Protein with Carbohydrate-Binding Module and Leaf-Branch Compost Cutinase to Enhance the Degradation Efficiency of Polyethylene Terephthalate.

机构信息

Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, School of Life Sciences, Jilin University, Changchun 130012, China.

出版信息

Int J Mol Sci. 2023 Feb 1;24(3):2780. doi: 10.3390/ijms24032780.

Abstract

Poly(ethylene terephthalate) (PET) is a manufactured plastic broadly available, whereas improper disposal of PET waste has become a serious burden on the environment. Leaf-branch compost cutinase (LCC) is one of the most powerful and promising PET hydrolases, and its mutant LCC shows high catalytic activity and excellent thermal stability. However, low binding affinity with PET has been found to dramatically limit its further industrial application. Herein, CBM and CBM were rationally selected from the CAZy database to construct fusion proteins with LCC, and mechanistic studies revealed that these two domains could bind with PET favorably via polar amino acids. The optimal temperatures of LCC-CBM and CBM-LCC were measured to be 70 and 80 °C, respectively. Moreover, these two fusion proteins exhibited favorable thermal stability, maintaining 53.1% and 48.8% of initial activity after the incubation at 90 °C for 300 min. Compared with LCC, the binding affinity of LCC-CBM and CBM-LCC for PET has been improved by 1.4- and 1.3-fold, respectively, and meanwhile their degradation efficiency on PET films was enhanced by 3.7% and 24.2%. Overall, this study demonstrated that the strategy of constructing fusion proteins is practical and prospective to facilitate the enzymatic PET degradation ability.

摘要

聚对苯二甲酸乙二醇酯(PET)是一种广泛存在的合成塑料,而 PET 废物的不当处理已成为环境的严重负担。叶枝角质酶(LCC)是最强大、最有前途的 PET 水解酶之一,其突变体 LCC 表现出高催化活性和优异的热稳定性。然而,其与 PET 的低结合亲和力极大地限制了其进一步的工业应用。在此,我们从 CAZy 数据库中合理选择 CBM 和 CBM,构建与 LCC 的融合蛋白,并通过机制研究揭示了这两个结构域可以通过极性氨基酸与 PET 有利地结合。测定了 LCC-CBM 和 CBM-LCC 的最佳温度分别为 70 和 80°C。此外,这两种融合蛋白表现出良好的热稳定性,在 90°C 孵育 300 min 后,仍保持初始活性的 53.1%和 48.8%。与 LCC 相比,LCC-CBM 和 CBM-LCC 对 PET 的结合亲和力分别提高了 1.4 倍和 1.3 倍,同时其对 PET 薄膜的降解效率分别提高了 3.7%和 24.2%。总体而言,这项研究表明,构建融合蛋白的策略是实用和有前景的,可提高酶法 PET 降解能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d02a/9917269/c79524e2e449/ijms-24-02780-g001.jpg

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