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Effects of Discrete Protein–Surface Interactions in Scanning Force Microscopy Adhesion Force Measurements

机译:离散蛋白-表面相互作用在扫描力显微镜粘附力测量中的作用

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摘要

The potential for measuring specific molecular recognition forces between probe-bound ligands and surface-bound proteins using a scanning force microscope (SFM) has recently gained much attention. Generally, observed discontinuities in the SFM force-displacement curves are attributed to the breaking of discrete, specific affinity bonds. The present study on the molecular recognition system composed of surface-immobilized antifluorescyl IgG molecules and SFM probe-bound fluorescein ligands has demonstrated that similar intermittent discontinuities in the SFM force-displacement curves may in fact be largely due to nonspecific discrete interactions between the protein and the SFM probe. The mechanical behavior of the cantilever–spherical bead system used in this study is discussed, as it appears to cause a false indication of the separation distance between the surface and probe. The strong lateral interactions which result in “stick and slip”-like discontinuities seen in the adhesion curves are likely the result of localized adhesion due to the heterogeneous nature of proteins and the lack of molecular mobility allowed in the experimental system. The effect is magnified with increasing contact time between the protein and probe. Factors which may cause such anomalous behavior in a specific ligand–protein system are discussed in order to avoid misinterpretation of SFM adhesion measurements.
机译:最近,使用扫描力显微镜(SFM)来测量探针结合的配体和表面结合的蛋白质之间的特定分子识别力的潜力备受关注。通常,在SFM力-位移曲线中观察到的不连续性是由于离散的特定亲和力键的断裂所致。本研究由表面固定的抗荧光基IgG分子和结合SFM探针的荧光素配体组成的分子识别系统的研究表明,SFM力-位移曲线中类似的间歇性间断实际上可能主要是由于蛋白质与蛋白质之间的非特异性离散相互作用所致。 SFM探针。讨论了本研究中使用的悬臂-球形磁珠系统的机械性能,因为它似乎导致表面和探头之间的分离距离的错误指示。由于蛋白质的异质性和实验系统所缺乏的分子迁移性,在粘附曲线中看到的强烈的横向相互作用会导致类似“粘滑”的不连续现象,这很可能是局部粘附的结果。随着蛋白质和探针之间接触时间的增加,这种作用会被放大。为了避免对SFM粘附力测量结果的误解,讨论了可能在特定的配体-蛋白质系统中引起此类异常行为的因素。

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    Joan K. Stuart; Vladimir Hlady;

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  • 年(卷),期 -1(11),4
  • 年度 -1
  • 页码 1368–1374
  • 总页数 17
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