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嗜热栖热放线菌脂肪酶在油水界面与其水解产物的竞争

Competition of Thermomyces lanuginosus lipase with its hydrolysis products at the oil-water interface.

作者信息

Muth Marco, Rothkötter Stefanie, Paprosch Steven, Schmid Reiner P, Schnitzlein Klaus

机构信息

Institute of Applied Chemistry, Brandenburg University of Technology Cottbus-Senftenberg, Platz der Deutschen Einheit 1, D-03046 Cottbus, Germany.

Institute of Applied Chemistry, Brandenburg University of Technology Cottbus-Senftenberg, Platz der Deutschen Einheit 1, D-03046 Cottbus, Germany.

出版信息

Colloids Surf B Biointerfaces. 2017 Jan 1;149:280-287. doi: 10.1016/j.colsurfb.2016.10.019. Epub 2016 Oct 12.

Abstract

Lipase-catalyzed hydrolysis of triglycerides yields glycerol and free fatty-acids, provided that the enzyme is non-regioselective. For an Sn-1,3 regioselective enzyme, such as lipase from Thermomyces lanuginosus, the final product is no longer glycerol but Sn-2 monoglyceride instead. However, surface active molecules generated by lipolysis may have a detrimental effect on the interfacial biocatalysis since it is known that low molecular weight surfactants can displace proteins from interfaces. By using drop profile analysis tensiometry, we evaluated the interfacial properties of the lipase-generated molecules and their competitive effect on the adsorption behavior of the lipase and on the proceeding lipolysis. Our results show that even at concentration ratios of 8.64×10M (Sn-2 monoglyceride) to 2.5×10M (lipase), the final interfacial pressure values are very similar as for the system containing the lipase alone (i.e. ∼26 mN/m). This is a strong indication that monoglycerides, as the most interfacially active products generated during regioselective lipolysis, are expelled from the oil-water interface by the lipase. We attribute this effect to intermolecular lipase-lipase interactions, resulting in a low desorption probability of the lipase. For low oleic acid concentrations, the interfacial tension is solely determined by the lipase, while for higher concentrations, lipase and oleic acid both contribute to the tension values. We propose a hypothesis based on the preferential interaction of oleic acid molecules with hydrophobic sites on the lipase. The pH dependence of the adsorption rate and the interfacial activity of the lipase were also investigated.

摘要

倘若酶是非区域选择性的,脂肪酶催化甘油三酯水解会产生甘油和游离脂肪酸。对于一种Sn-1,3区域选择性酶,比如来自疏棉状嗜热丝孢菌的脂肪酶,最终产物不再是甘油,而是Sn-2单甘油酯。然而,脂肪分解产生的表面活性分子可能会对界面生物催化产生不利影响,因为已知低分子量表面活性剂会将蛋白质从界面上置换下来。通过使用滴外形分析张力测定法,我们评估了脂肪酶产生的分子的界面性质及其对脂肪酶吸附行为和进行中的脂肪分解的竞争效应。我们的结果表明,即使在8.64×10M(Sn-2单甘油酯)与2.5×10M(脂肪酶)的浓度比下,最终的界面压力值与仅含脂肪酶的体系(即~26 mN/m)非常相似。这有力地表明,作为区域选择性脂肪分解过程中产生的最具界面活性的产物,单甘油酯会被脂肪酶从油水界面上排挤出去。我们将这种效应归因于脂肪酶分子间的相互作用,导致脂肪酶的解吸概率较低。对于低油酸浓度,界面张力仅由脂肪酶决定,而对于较高浓度,脂肪酶和油酸都会对张力值产生影响。我们基于油酸分子与脂肪酶上疏水位点的优先相互作用提出了一个假设。我们还研究了脂肪酶吸附速率和界面活性的pH依赖性。

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