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首页> 外文期刊>Catalysis science & technology >Substrate hydrophobicity and enzyme modifiers play a major role in the activity of lipase fromThermomyces lanuginosus
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Substrate hydrophobicity and enzyme modifiers play a major role in the activity of lipase fromThermomyces lanuginosus

机译:底物的疏水性和酶修饰符脂肪酶活性的重要作用fromThermomyces lanuginosus

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摘要

Lipase fromThermomyces lanuginosus(TL) displays high affinity for long-chain substrates, such as triolein and other long-chain triacylglycerols. Aiming to broaden the substrate chain-length specificity, different aldehydes (naphthaldehyde, butyraldehyde, hexyl aldehyde and dodecyl aldehyde) and naphthyl isothiocyanate were grafted onto lipase TL through lysine coupling. The catalytic activity of the modified lipases was investigated by reaction with substrates differing in the aliphatic chain size (p-nitrophenyl benzoate,p-nitrophenyl acetate,p-nitrophenyl butyrate,p-nitrophenyl hexanoate,p-nitrophenyl octanoate,p-nitrophenyl laurate andp-nitrophenyl palmitate). The enzymes modified with aldehydes revealed higher activity than the enzymes modified with the isothiocyanate. The most notable results were achieved for lipase TL grafted with 4 units of a dodecyl chain (TL5), which revealed the highest activity against all the tested substrates, being 10-fold more active than the native enzyme for smaller substrates (acetate and butyrate chains) and 2-fold for longer substrates (laurate and palmitate chains). The kinetic parameters evaluated (V-max,K(M)andk(cat)/K-M) also confirmed the significant catalytic performance of TL5 compared to the native enzyme. The increase in activity revealed by the modified lipases was directly proportional to the size and hydrophobicity of the linkers' aliphatic chain. Small conformational changes, either on the enzyme's lid or on the cavity of the active site were suggested by molecular dynamics simulations, circular dichroism and fluorescence spectroscopy. Moreover, the grafting with aldehydes or with the isothiocyanate conferred higher thermostability to the lipase. The chemical surface modification developed efficiently improved the activity of lipase TL, broadening the substrate's chain-length specificity, increasing thereafter the substrate possibilities for industrial reactions.
机译:脂肪酶fromThermomyces lanuginosus (TL)显示高亲和力的长链基质,如三油精和其他长链甘油三酯。旨在扩大底物链长特异性,不同的醛(萘甲醛丁醛、己醛和十二烷基醛)和萘基异硫氰酸酯通过嫁接到脂肪酶TL赖氨酸耦合。修改后的脂酶的催化活性调查了与底物反应不同的脂肪链的大小(对硝基苯苯甲酸、对硝基苯acetate, p-nitrophenyl butyrate, p-nitrophenylhexanoate, p-nitrophenyl octanoate, p-nitrophenyl月桂酸盐andp-nitrophenyl棕榈酸酯)。修改与醛显示更高的活动比酶与修改异硫氰酸盐。实现与4单位的脂肪酶TL嫁接十二烷基链(TL5)之前,它揭示了最高活动对所有测试基板,10倍比原生酶更加活跃较小的基质(乙酸和丁酸链)和2倍时间基质(月桂酸盐和棕榈酸酯链)。评估(vmax K (M) andk (cat) / km)确认重要的催化性能TL5相比之前的原生酶。增加活动揭示了修改大小和脂酶直接成正比疏水性基团的脂肪链。小的构象变化,在酶的盖子或活性部位的空腔提出了通过分子动力学模拟,圆二色性和荧光光谱。此外,与醛或嫁接异硫氰酸酯赋予更高的热稳定性脂肪酶。开发效率提高的活动脂肪酶TL,扩大底物的链长特异性,增加工业的底物的可能性反应。

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