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The structure of DNA by direct imaging

机译:直接成像的DNA结构

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The structure of DNA was determined in 1953 by x-ray fiber diffraction. Several attempts have been made to obtain a direct image of DNA with alternative techniques. The direct image is intended to allow a quantitative evaluation of all relevant characteristic lengths present in a molecule. A direct image of DNA, which is different from diffraction in the reciprocal space, is difficult to obtain for two main reasons: the intrinsic very low contrast of the elements that form the molecule and the difficulty of preparing the sample while preserving its pristine shape and size. We show that through a preparation procedure compatible with the DNA physiological conditions, a direct image of a single suspended DNA molecule can be obtained. In the image, all relevant lengths of A-form DNA are measurable. A high-resolution transmission electron microscope that operates at 80 keV with an ultimate resolution of 1.5 ? was used for this experiment. Direct imaging of a single molecule can be used as a method to address biological problems that require knowledge at the single-molecule level, given that the average information obtained by x-ray diffraction of crystals or fibers is not sufficient for detailed structure determination, or when crystals cannot be obtained from biological molecules or are not sufficient in understanding multiple protein configurations.
机译:1953年,通过X射线纤维衍射确定了DNA的结构。为了使用替代技术获得DNA的直接图像,已经进行了几次尝试。直接图像旨在允许定量评估分子中存在的所有相关特征长度。由于两个主要原因,很难获得与互易空间中的衍射不同的直接DNA图像:形成该分子的元素固有的非常低的对比度,以及在保留其原始形状和制备样品的过程中存在困难。尺寸。我们表明,通过与DNA生理条件兼容的制备程序,可以获得单个悬浮DNA分子的直接图像。在图像中,可测量A型DNA的所有相关长度。高分辨率透射电子显微镜,工作于80 keV,极限分辨率为1.5?用于该实验。假定通过晶体或纤维的X射线衍射获得的平均信息不足以进行详细的结构确定,或者将单个分子的直接成像用作解决需要单分子水平知识的生物学问题的方法,或者当无法从生物分子获得晶体或不足以理解多种蛋白质构型时。

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