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Poly(N-vinylpyrrolidone)'Poly(dimethylsiloxane)-Based Polymersome Nanoreactors for Laccase-Catalyzed Biotransformations

机译:聚(N-乙烯基吡咯烷酮)“基于聚(二甲基硅氧烷)的漆酶催化生物转化的纳米聚合物反应器

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摘要

Laccases (Lac) are oxidizing enzymes with a broad range of applications, for example, in soil remediation, as bleaching agent in the textile industry, and for cosmetics. Protecting the enzyme against degradation and inhibition is of great importance for many of these applications. Polymer vesicles (polymersomes) from poly(N-vinyl- pyrrolidone) - block-poly (dimethylsiloxane) - block-p oly(N-vinylpyrroli- done) (PNVP-b-PDMS-b-PNVP) triblock copolymers were prepared and investigated as intrinsically semipermeable nanoreactors for Lac. The block copolymers allow oxygen to enter and reactive oxygen species (ROS) to leave the polymersomes. EPR spectroscopy proved that Lac can generate ROS. They could diffuse out of the polymersome and oxidize an aromatic substrate outside the vesicles. Michaelis-Menten constants K_m between 60 and 143 μM and turn over numbers k_(cat)t of 0.11 to 0.18 s~(-1) were determined for Lac in the nanoreactors. The molecular weight and the PDMS-to-PNVP ratio of the block copolymers influenced these apparent Michaelis-Menten parameters. Encapsulation of Lac in the polymersomes significantly protected the enzyme against enzymatic degradation and against small inhibitors: proteinase K caused 90% less degradation and the inhibitor sodium azide did not affect the enzyme's activity. Therefore, these polymer nanoreactors are an effective means to stabilize laccase.
机译:漆酶(Lac)是氧化酶,具有广泛的应用,例如在土壤修复中,在纺织工业中用作漂白剂以及用于化妆品。对于许多这些应用而言,保护酶免于降解和抑制是非常重要的。制备并研究了由聚(N-乙烯基-吡咯烷酮)-嵌段-聚(二甲基硅氧烷)-嵌段-聚(N-乙烯基吡咯烷酮)(PNVP-b-PDMS-b-PNVP)三嵌段共聚物制成的聚合物囊泡(聚合物囊泡)作为Lac的本征半渗透性纳米反应器。嵌段共聚物允许氧气进入而活性氧(ROS)离开聚合物囊泡。 EPR光谱证明Lac可以产生ROS。它们可能从多聚体中扩散出来并氧化囊泡外部的芳香底物。对于纳米反应器中的Lac,确定了Michaelis-Menten常数K_m在60和143μM之间,翻转数k_(cat)t为0.11到0.18 s〜(-1)。嵌段共聚物的分子量和PDMS与PNVP之比影响了这些表观Michaelis-Menten参数。将Lac封装在聚合物囊泡中可显着保护酶免受酶促降解和抗小抑制剂的侵害:蛋白酶K引起的降解降低90%,而叠氮化钠不影响酶的活性。因此,这些聚合物纳米反应器是稳定漆酶的有效手段。

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