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A Flexible Nanoarray Approach for the Assembly and Probing of Molecular Complexes

机译:用于组装和探测分子复合物的灵活纳米阵列方法

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摘要

Immobilization is a key step involved in probing molecular interactions using single-molecule force spectroscopy methods, including atomic force microscopy (AFM). To our knowledge, we describe a novel approach termed flexible nanoarray (FNA) in which the interaction between the two internally immobilized amyloid β peptides is measured by pulling of the tether. The FNA tether was synthesized with nonnucleotide phosphoramidite monomers using the DNA synthesis chemistry. The two anchoring points for immobilization of the peptides inside the tether were incorporated at defined distances between them and from the ends of the polymer. Decamers of amyloid β peptide capable of dimer formation were selected as a test system. The formation of the peptide dimers was verified by AFM force spectroscopy by pulling the tether at the ends. In these experiments, the thiolated end of the FNA tether was covalently immobilized on the AFM substrate functionalized with maleimide. The other end of the FNA tether was functionalized with biotin to form a noncovalent link with the streptavidin functionalized AFM tip during the approach stage. The dimers’ rupture fingerprint was unambiguously identified on the force curves by its position and the force value. The FNA design allowed reversible experiments in which the monomers were allowed to associate after the rupture of the dimers by performing the approach stage before the rupture of the biotin-streptavidin link. This suggests that the FNA technique is capable of analyzing multiple intermolecular interactions in the same molecular complex. The computational analysis showed that the tethered peptides assemble into the same dimer structure as that formed by nontethered peptides, suggesting that the FNA tether has the necessary flexibility to enable assembly of the dimer even during the course of the force spectroscopy experiment.
机译:固定化是使用单分子力光谱法(包括原子力显微镜(AFM))探测分子相互作用的关键步骤。据我们所知,我们描述了一种称为柔性纳米阵列(FNA)的新方法,其中两个内部固定的淀粉样β肽之间的相互作用是通过拉系绳来测量的。使用DNA合成化学方法,用非核苷酸亚磷酰胺单体合成FNA系链。在肽之间和与聚合物末端之间的确定距离处并入了用于将肽固定在系链内部的两个锚定点。选择能够形成二聚体的淀粉样β肽的Decamer作为测试系统。肽二聚体的形成通过AFM力谱法通过在末端拉动系链来验证。在这些实验中,将FNA系链的巯基末端共价固定在马来酰亚胺官能化的AFM底物上。在接近阶段,将FNA系链的另一端用生物素功能化,以与链霉亲和素功能化的AFM尖端形成非共价连接。根据力曲线的位置和力值,可以清楚地识别二聚体的断裂指纹。 FNA设计允许可逆实验,其中通过在生物素-链霉亲和素链断裂之前进行接近阶段,使单体在二聚体断裂后缔合。这表明FNA技术能够分析同一分子复合物中的多个分子间相互作用。计算分析表明,拴系肽组装成与非拴系肽形成的二聚体结构相同,这表明FNA拴系即使在力谱实验过程中也具有使二聚体组装的必要灵活性。

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