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球状蛋白质的纳米力学性质:乳酸氧化酶

Nanomechanical properties of globular proteins: lactate oxidase.

作者信息

Parra Ana, Casero Elena, Lorenzo Encarnación, Pariente Félix, Vázquez Luis

机构信息

Departamento de Química Analítica y Análisis Instrumental, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

出版信息

Langmuir. 2007 Feb 27;23(5):2747-54. doi: 10.1021/la062864p. Epub 2007 Jan 30.

Abstract

We report on the study of the nanomechanical properties of a lactate oxidase (LOx) monolayer immobilized on gold substrates by atomic force microscopy techniques operating under buffer conditions. Topographical contact mode imaging evidenced the protein deformation under the applied tip load. We performed approaching force curves with both stiff and soft cantilevers by imposing maximum loads of 1.6 nN and 400 pN, respectively. We found that the experimental data were well fitted by the Hertz model for a conical indenter. The use of two types of cantilevers allowed us to check further the consistency of the applicability of the Hertz model to the experimental data. After analyzing 180 curves, we obtained an average value of Young's modulus for the LOx layer in the 0.5-0.8 GPa range. These results agreed with those obtained for LOx submonolayer deposits on mica substrates, which allows discarding any important contribution from the underlying substrate on the measured properties. This range of values is closer to those obtained by other techniques on other globular proteins in comparison with those reported in previous AFM studies on similar systems. We found that for our experimental conditions the force curves can be, in principle, well fitted by the Hertz model for both conical and spherical indenter geometries. However, as the Young's modulus obtained for both geometries can differ appreciably, it becomes necessary to assess which indenter geometry is more adequate to explain the experimental data. For such purpose a systematic study of the indentation versus applied force curves obtained from both fittings for all the experimental curves was done.

摘要

我们报告了一项关于通过在缓冲条件下操作的原子力显微镜技术,对固定在金基底上的乳酸氧化酶(LOx)单层的纳米力学性质进行的研究。形貌接触模式成像证明了在施加的针尖负载下蛋白质的变形。我们分别施加1.6 nN和400 pN的最大负载,使用刚性和柔性悬臂进行接近力曲线测量。我们发现实验数据与用于锥形压头的赫兹模型拟合良好。使用两种类型的悬臂使我们能够进一步检验赫兹模型对实验数据适用性的一致性。在分析了180条曲线后,我们得到LOx层的杨氏模量平均值在0.5 - 0.8 GPa范围内。这些结果与在云母基底上的LOx亚单层沉积物所获得的结果一致,这使得可以排除底层基底对测量性质的任何重要贡献。与先前关于类似系统的原子力显微镜研究报告的值相比,这个值的范围更接近通过其他技术在其他球状蛋白质上获得的值。我们发现,对于我们的实验条件,原则上力曲线对于锥形和球形压头几何形状都可以很好地用赫兹模型拟合。然而,由于从两种几何形状获得的杨氏模量可能有明显差异,因此有必要评估哪种压头几何形状更适合解释实验数据。为此,对所有实验曲线从两种拟合中获得的压痕与施加力曲线进行了系统研究。

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