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Rational design of Pleurotus eryngii versatile ligninolytic peroxidase for enhanced pH and thermal stability through structure-based protein engineering

机译:PLEUROTUS ORYNGII通用木质素过氧化物的理性设计,通过基于结构的蛋白质工程提高pH和热稳定性

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摘要

Versatile peroxidase (VP) from Pleurotus eryngii is a high redox potential peroxidase. It has aroused great biotechnological interest due to its ability to oxidize a wide range of substrates, but its application is still limited due to low pH and thermal stability. Since CiP (Coprinopsis cinerea peroxidase) and PNP (peanut peroxidase) exhibited higher pH and thermal stability than VP, several motifs, which might contribute to their pH and thermal stability, were identified through structure and sequence alignment. Six VP variants incorporating the beneficial motifs were designed and constructed. Most variants were nearly completely inactivated except V1 (Variant 1) and V4. V1 showed comparable activity to WT VP against ABTS, while V4 exhibited reduced activity. V1 displayed improved pH stability than WT VP, at pH 3.0 in particular, whereas the pH stability of V4 did not change a lot. The thermal stabilities of V1 and V4 were enhanced with T50 raised by 3 degrees C. The results demonstrated that variants containing the beneficial motifs of CiP and PNP conferred VP with improved pH and thermal stability.
机译:来自Pleurotus的通酯过氧化物酶(VP)是一种高氧化还原潜在过氧化物酶。由于其氧化广泛的基材的能力,它引起了巨大的生物技术利益,但由于低pH和热稳定性,其应用仍然受到限制。由于CIP(Coprinopsis Cinerea过氧化物酶)和PNP(花生过氧化物酶)表现出高于VP的pH和热稳定性,因此通过结构和序列对准鉴定了几个可能有助于它们pH和热稳定性的泳学。设计并构建了包含有益图案的六个VP变体。除V1(变体1)和V4外几乎完全灭活大多数变体。 V1向WT VP对抗ABTS显示了类似的活性,而V4表现出降低的活性。 v1特别地显示PH 3.0的PH稳定性,特别是pH 3.0,而V4的pH稳定性没有变化。 v1和v4的热稳定性随3℃的T50增强。结果表明,含有CIP和PNP的有益基序的变体赋予VP,并具有改善的pH和热稳定性。

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