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AFM volumetric methods for the characterization of proteins and nucleic acids

机译:AFM体积法表征蛋白质和核酸

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The atomic force microscope overestimates lateral dimensions and underestimates heights of nanometer size objects such as proteins and nucleic acids. This has made researchers cautious of AFM measurements, even though there is no other technique capable of measuring topography with sub-nanometer precision. Nevertheless, several approaches for determining the stoichiometry of protein and protein-DNA complexes have been developed which show that, although the absolute values may be incorrect, the AFM volume is essentially proportional to the mass. This has allowed the determination of the mass of protein complexes with the help of a calibration curve. Here we review the main techniques for AFM volume measurements and detail a methodology that significantly reduces the associated errors. This method uses a fragment of DNA as a fiducial marker by which the volume of a protein is normalized. The use of fiducial markers co-adsorbed together with the protein of interest minimizes the contribution of tip-induced artifacts as they affect both the object of interest and the marker. Finally, we apply this method to the measurement of the length of single-stranded DNA. A linear relationship between length and volume was obtained, opening the door to studies of ssDNA intermediates formed during complex DNA transactions such as replication, recombination and repair.
机译:原子力显微镜高估了横向尺寸,而低估了诸如蛋白质和核酸之类的纳米尺寸物体的高度。即使没有其他技术能够以亚纳米精度测量地形,这也使研究人员对AFM测量保持谨慎。然而,已经开发了几种确定蛋白质和蛋白质-DNA复合物化学计量的方法,这些方法表明,尽管绝对值可能不正确,但AFM体积基本上与质量成正比。这样就可以借助校准曲线确定蛋白质复合物的质量。在这里,我们回顾了AFM体积测量的主要技术,并详细介绍了一种可显着减少相关误差的方法。该方法使用DNA片段作为基准标记,通过该标记可以标准化蛋白质的体积。与目标蛋白一起共吸附的基准标记物的使用使尖端诱导的假象的影响最小化,因为它们影响目标物和标记物。最后,我们将该方法应用于单链DNA长度的测量。获得了长度与体积之间的线性关系,为研究在复杂的DNA交易(例如复制,重组和修复)过程中形成的ssDNA中间体打开了大门。

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