首页> 美国卫生研究院文献>Biophysical Journal >Covalent immobilization of native biomolecules onto Au(111) via N-hydroxysuccinimide ester functionalized self-assembled monolayers for scanning probe microscopy.
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Covalent immobilization of native biomolecules onto Au(111) via N-hydroxysuccinimide ester functionalized self-assembled monolayers for scanning probe microscopy.

机译:天然生物分子通过N-羟基琥珀酰亚胺酯官能化的自组装单层共价固定在Au(111)上用于扫描探针显微镜。

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摘要

We have worked out a procedure for covalent binding of native biomacromolecules on flat gold surfaces for scanning probe microscopy in aqueous buffer solutions and for other nanotechnological applications, such as the direct measurement of interaction forces between immobilized macromolecules, of their elastomechanical properties, etc. It is based on the covalent immobilization of amino group-containing biomolecules (e.g., proteins, phospholipids) onto atomically flat gold surfaces via omega-functionalized self-assembled monolayers. We present the synthesis of the parent compound, dithio-bis(succinimidylundecanoate) (DSU), and a detailed study of the chemical and physical properties of the monolayer it forms spontaneously on Au(111). Scanning tunneling microscopy and atomic force microscopy (AFM) revealed a monolayer arrangement with the well-known depressions that are known to stem from an etch process during the self-assembly. The total density of the omega-N-hydroxysuccinimidyl groups on atomically flat gold was 585 pmol/cm(2), as determined by chemisorption of (14)C-labeled DSU. This corresponded to approximately 75% of the maximum density of the omega-unsubstituted alkanethiol. Measurements of the kinetics of monolayer formation showed a very fast initial phase, with total coverage within 30 S. A subsequent slower rearrangement of the chemisorbed molecules, as indicated by AFM, led to a decrease in the number of monolayer depressions in approximately 60 min. The rate of hydrolysis of the omega-N-hydroxysuccinimide groups at the monolayer/water interface was found to be very slow, even at moderately alkaline pH values. Furthermore, the binding of low-molecular-weight amines and of a model protein was investigated in detail.
机译:我们已经制定了一种程序,用于将天然生物大分子共价结合在平坦的金表面上,用于在水性缓冲溶液中进行扫描探针显微镜检查以及用于其他纳米技术应用,例如直接测量固定的大分子之间的相互作用力,其弹性力学性能等。它是基于通过ω-官能化的自组装单层将含氨基的生物分子(例如蛋白质,磷脂)共价固定在原子平坦的金表面上。我们介绍了母体化合物二硫代双(琥珀酰亚胺基十一烷基酸酯)(DSU)的合成,以及对它在Au(111)上自发形成的单层化学和物理性质的详细研究。扫描隧道显微镜和原子力显微镜(AFM)揭示了一个单层结构,其中有众所周知的凹陷,这些凹陷是自组装过程中的蚀刻过程引起的。原子平金上的ω-N-羟基琥珀酰亚胺基的总密度为585 pmol / cm(2),通过(14)C标记DSU的化学吸附确定。这相当于未取代的ω-烷硫醇的最大密度的大约75%。对单层形成动力学的测量显示出非常快的初始阶段,总覆盖范围在30秒以内。随后,化学吸附分子的较慢重排(如AFM所示)导致单层凹陷数在大约60分钟内减少。发现即使在中等碱性pH值下,在单层/水界面的ω-N-羟基琥珀酰亚胺基团的水解速率也非常慢。此外,详细研究了低分子量胺与模型蛋白的结合。

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