evoxx technologies GmbH, Alfred-Nobel-Str. 10, D-40789, Monheim am Rhein, Germany.
Institute of Molecular Enzyme Technology, Heinrich Heine University Düsseldorf, Forschungszentrum Jülich, D-52425, Jülich, Germany.
Appl Microbiol Biotechnol. 2019 Jun;103(12):4801-4812. doi: 10.1007/s00253-019-09760-9. Epub 2019 Apr 16.
Poly(ethylene terephthalate) (PET) is one of the most widely applied synthetic polymers, but its hydrophobicity is challenging for many industrial applications. Biotechnological modification of PET surface can be achieved by PET hydrolyzing cutinases. In order to increase the adsorption towards their unnatural substrate, the enzymes are fused to carbohydrate-binding modules (CBMs) leading to enhanced activity. In this study, we identified novel PET binding CBMs and characterized the CBM-PET interplay. We developed a semi-quantitative method to detect CBMs bound to PET films. Screening of eight CBMs from diverse families for PET binding revealed one CBM that possesses a high affinity towards PET. Molecular dynamics (MD) simulations of the CBM-PET interface revealed tryptophan residues forming an aromatic triad on the peptide surface. Their interaction with phenyl rings of PET is stabilized by additional hydrogen bonds formed between amino acids close to the aromatic triad. Furthermore, the ratio of hydrophobic to polar contacts at the interface was identified as an important feature determining the strength of PET binding of CBMs. The interaction of CBM tryptophan residues with PET was confirmed experimentally by tryptophan quenching measurements after addition of PET nanoparticles to CBM. Our findings are useful for engineering PET hydrolyzing enzymes and may also find applications in functionalization of PET.
聚对苯二甲酸乙二醇酯(PET)是应用最广泛的合成聚合物之一,但由于其疏水性,在许多工业应用中受到挑战。通过 PET 水解酶,可以对 PET 表面进行生物技术修饰。为了提高对非天然底物的吸附能力,这些酶与碳水化合物结合模块(CBM)融合,从而提高了活性。在本研究中,我们鉴定了新型的 PET 结合 CBM 并对 CBM-PET 相互作用进行了表征。我们开发了一种半定量方法来检测结合在 PET 薄膜上的 CBM。对来自不同家族的 8 种 CBM 进行 PET 结合筛选,发现有一种 CBM 对 PET 具有高亲和力。CBM-PET 界面的分子动力学(MD)模拟显示,三肽表面上的色氨酸残基形成一个芳香三联体。它们与 PET 芳环之间的额外氢键稳定了芳香三联体的相互作用。此外,界面上疏水接触与极性接触的比例被确定为决定 CBM 与 PET 结合强度的重要特征。通过向 CBM 中添加 PET 纳米颗粒后进行色氨酸猝灭测量,实验证实了 CBM 色氨酸残基与 PET 的相互作用。我们的研究结果可用于工程化 PET 水解酶,也可能在 PET 的功能化方面有应用。