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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Differential adsorption of variants of the Thermomyces lanuginosus lipase on a hydrophobic surface suggests a role for local flexibility
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Differential adsorption of variants of the Thermomyces lanuginosus lipase on a hydrophobic surface suggests a role for local flexibility

机译:嗜热霉菌脂肪酶变体在疏水表面上的差异吸附表明了局部柔韧性的作用

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摘要

Lipases are activated at interfaces between aqueous and hydrophobic phases, where they typically undergo conformational changes leading to significant activity increase. Here I use a quartz crystal microbalance with dissipation (QCM-D) to study changes in layer thickness and viscosity during the adsorption of variants of the Thermomyces lanuginosus lipase (TIL) onto a methyl-terminated hydrophobic surface. Unlike wildtype TIL, the variant Mut1, which shows improved performance under certain test conditions, shows a large dissipation increase during the binding process, leading to a significantly thicker layer. This altered adsorption behaviour may be linked to Mut1's changes in secondary structure. This is corroborated by the fact that four other TIL mutants with unaltered secondary structure showed wildtype-like absorption behaviour. Unlike wildtype TIL and the other variants, Mutt contains several consecutive basic residues introduced into the C-terminal region which is close in space to the N-terminal part of the protein, which also contains several basic residues. Electrostatic repulsion between these two regions leading to local structural flexibility may facilitate altered adsorption behaviour and ultimately to improved enzymatic performance on a solid surface. QCM-D thus provides a good approach to screen protein variants for their adsorption properties on hydrophobic surfaces. (c) 2008 Elsevier B.V. All rights reserved.
机译:脂肪酶在水相和疏水相之间的界面处被激活,在那里它们通常经历构象变化,导致活性显着增加。在这里,我使用具有耗散特性的石英微天平(QCM-D)研究了嗜热霉菌脂肪酶(TIL)的变体吸附到甲基末端疏水表面上过程中层厚度和粘度的变化。与野生型TIL不同,变异Mut1在某些测试条件下表现出改进的性能,在结合过程中显示出较大的耗散增加,从而导致明显更厚的层。这种改变的吸附行为可能与Mut1二级结构的变化有关。其他四个二级结构不变的TIL突变体显示出类似野生型的吸收行为,这一事实得到了证实。与野生型TIL和其他变体不同,Mutt包含几个连续的碱性残基,这些残基被引入C端区域,该区域在空间上接近蛋白质的N端部分,该蛋白质也包含几个碱性残基。这两个区域之间的静电排斥导致局部结构柔韧性可能有助于改变吸附行为,并最终改善固体表面的酶促性能。因此,QCM-D提供了一种筛选蛋白质变异体在疏水表面上吸附特性的好方法。 (c)2008 Elsevier B.V.保留所有权利。

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