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Structure of human chromosomes studied by atomic force microscopy

机译:原子力显微镜研究人类染色体的结构

摘要

In this work human chromosomes have been treated with RNase and pepsin to remove the layer of cellular material that covers the standard preparations on glass slides. This allows characterization of the topography of chromosomes at nanometer scale in air and in physiological solution by atomic force microscopy. Imaging of the dehydrated structure in air indicates radial arrangement of chromatin loops as the last level of DNA packing. However, imaging in liquid reveals a last level of organization consisting of a hierarchy of bands and coils. Additionally force curves between the tip and the chromosome in liquid are consistent with radial chromatin loops. These results and previous electron microscopy studies are analyzed, and a model is proposed for the chromosome structure in which radial loops and helical coils coexist. © 2003 Elsevier Science (USA). All rights reserved.
机译:在这项工作中,已经用RNase和胃蛋白酶处理了人类染色体,以去除覆盖载玻片上标准制剂的细胞材料层。这允许通过原子力显微镜在空气和生理溶液中以纳米尺度表征染色体的形貌。空气中脱水结构的成像表明,染色质环的径向排列是DNA堆积的最后水平。但是,液体中的成像显示出由条带和线圈层次构成的组织的最后一个层次。另外,液体中的尖端与染色体之间的力曲线与径向染色质环一致。分析了这些结果和先前的电子显微镜研究,并提出了其中径向环和螺旋环共存的染色体结构模型。 ©2003 Elsevier Science(美国)。版权所有。

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