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Spatial control of chromosomal location in a live cell with functionalized magnetic particles

机译:生活空间控制染色体的位置细胞与功能化磁性粒子

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摘要

Long-range chromosomal travel is a phenomenon unique to cell division. Methods for non-invasive, artificial manipulation of chromosomes, such as optical or magnetic tweezers, have difficulty in producing the motion of whole chromosomes in live cells. Here, we report the spatial control of chromosomes over 10 mu m in a live mouse oocyte using magnetic particles driven by an external magnetic field. Selective capture of the chromosomes was achieved using antibodies specific for histone H1 in the chromosome that were conjugated to magnetic particles (H1-BMPs). When an external magnetic field was applied, the chromosomes captured by the H1-BMPs traveled through the cytosol and accumulated near the cell membrane though the movement of the chromosomes captured by H1-BMPs was strongly disturbed by the distribution of the cytoskeleton (e.g. actin filaments). Being non-invasive in nature, our approach will enable new opportunities in the remote manipulation of subcellular elements.
机译:远程染色体旅行是一种现象细胞分裂所特有的。非侵入性、人工操纵的染色体,如光或磁镊子,难以在生产运动整个染色体的活细胞。报告的空间控制染色体在10使用磁μm的活老鼠卵母细胞粒子由外部磁场驱动的。选择性捕获的染色体使用特定的组蛋白H1的抗体染色体是磁共轭粒子(H1-BMPs)。应用领域,对染色体被H1-BMPs通过胞质和旅行在细胞膜附近虽然积累起来的运动的染色体H1-BMPs捕捉到强烈干扰的分布细胞骨架(如肌动蛋白丝)。非侵入性的性质,将使我们的方法远程操纵的新机会亚细胞的元素。

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