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Ordered arrays of native chromatin molecules for high-resolution imaging and analysis

机译:用于高分辨率成像和分析的天然染色质分子的有序阵列

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Individual chromatin molecules contain valuable genetic and epigenetic information. To date, there have not been reliable techniques available for the controlled stretching and manipulation of individual chromatin fragments for high-resolution imaging and analysis of these molecules. We report the controlled stretching of single chromatin fragments extracted from two different cancerous cell types (M091 and HeLa) characterized through fluorescence microscopy and atomic force microscopy (AFM). Our method combines soft lithography with molecular stretching to form ordered arrays of more than 250 000 individual chromatin fragments immobilized into a beads-on-a-string structure on a solid transparent support. Using fluorescence microscopy and AFM, we verified the presence of histone proteins after the stretching and transfer process.
机译:单个染色质分子包含有价值的遗传和表观遗传信息。迄今为止,还没有可靠的技术可用于单个染色质片段的受控拉伸和操纵,以用于这些分子的高分辨率成像和分析。我们报告了通过荧光显微镜和原子力显微镜(AFM)表征的从两种不同癌细胞类型(M091和HeLa)提取的单个染色质片段的可控拉伸。我们的方法将软光刻技术与分子拉伸技术结合起来,形成了固定在固体透明载体上的超过25万个独立染色质片段的有序阵列,固定在一个串珠结构中。使用荧光显微镜和原子力显微镜,我们验证了拉伸和转移过程后组蛋白的存在。

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