渗透DNA的飞行时间光纤衍射研究。

V T Forsyth, P Langan, M A Whalley, A Mahendrasingam, C C Wilson, U Giesen, M T Dauvergne, S A Mason, W Fuller
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引用次数: 3

摘要

卢瑟福阿普尔顿实验室(Rutherford Appleton Laboratory)的脉冲中子源SXD衍射仪已被用于记录DNA的高分辨率飞行时间Laue纤维衍射数据。这些实验是首次使用A构象的DNA纤维进行的,并使用氘化DNA制备,以尽量减少非相干背景散射。这些研究补充了之前在朗格万研究所D19仪器上使用单色中子进行的实验。样品制备包括绘制大量这些氘化DNA纤维并将它们安装在平行阵列中。从摄像机设计、采样环境、数据采集等方面讨论了数据采集策略。讨论了对记录的飞行时间数据进行校正并将其映射到最终的互易空间光纤衍射数据集的方法。根据这些数据计算得出的A-DNA周围水分布的差分傅里叶图与D19上氢化A-DNA记录的数据所得的结果进行了比较。由于单色法和劳厄法用于样品制备、数据收集和数据处理的方法有本质上的不同,因此这些实验的结果也为独立测试两种方法中使用的数据简化和分析技术提供了宝贵的机会。
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Time-of-flight Laue fiber diffraction studies of perdeuterated DNA.

The diffractometer SXD at the Rutherford Appleton Laboratory ISIS pulsed neutron source has been used to record high resolution time-of-flight Laue fiber diffraction data from DNA. These experiments, which are the first of their kind, were undertaken using fibers of DNA in the A conformation and prepared using deuterated DNA in order to minimise incoherent background scattering. These studies complement previous experiments on instrument D19 at the Institut Laue Langevin using monochromatic neutrons. Sample preparation involved drawing large numbers of these deuterated DNA fibers and mounting them in a parallel array. The strategy of data collection is discussed in terms of camera design, sample environment and data collection. The methods used to correct the recorded time-of-flight data and map it into the final reciprocal space fiber diffraction dataset are also discussed. Difference Fourier maps showing the distribution of water around A-DNA calculated on the basis of these data are compared with results obtained using data recorded from hydrogenated A-DNA on D19. Since the methods used for sample preparation, data collection and data processing are fundamentally different for the monochromatic and Laue techniques, the results of these experiments also afford a valuable opportunity to independently test the data reduction and analysis techniques used in the two methods.

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