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Hydrolysis of cutin by PET-hydrolases

机译:PET水解酶水解角质

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Functionalisation of synthetic polymers by using enzymes has been recently demonstrated. The major advantage of enzymes over chemical processes lies in their surface specific and endo-wise mode of action. Surface hydrophilisation of PET with lipases and cutinases leads to a dramatic increase of the surfacial acid and hydroxyl group content while conventional chemical treatment does not cause any change. However, this PET-hydrolysing activity by enzymes from distinct classes has not yet been correlated to activity on natural polyesters. Here, we show that lipases, cutinases and a PHA-depolymerase are all capable of hydrolysing PET, while only lipases and cutinases also hydrolysed cutin to various degrees. Lipases showed a higher specificity for terminal fatty acids while the cutinases preferred hydroxy fatty acids during cutin hydrolysis.
机译:最近已经证明了通过使用酶对合成聚合物进行功能化。酶相对于化学过程的主要优势在于其表面特异性和内向作用方式。用脂肪酶和角质酶对PET进行表面亲水化处理会导致表面酸和羟基含量急剧增加,而常规化学处理则不会引起任何变化。然而,来自不同类别的酶的这种PET水解活性尚未与对天然聚酯的活性相关。在这里,我们显示脂肪酶,角质酶和PHA解聚酶均能够水解PET,而只有脂肪酶和角质酶也可以水解角质。脂酶显示出对末端脂肪酸更高的特异性,而角质酶在角质水解过程中优选羟基脂肪酸。

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