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Nanoscale dynamics of centromere nucleosomes and the critical roles of CENP-A

机译:Cenp-A的纳米级核心的纳米级动力学和临界作用

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摘要

In the absence of a functioning centromere, chromosome segregation becomes aberrant, leading to an increased rate of aneuploidy. The highly specific recognition of centromeres by kinetochores suggests that specific structural characteristics define this region, however, the structural details and mechanism underlying this recognition remains a matter of intense investigation. To address this, high-speed atomic force microscopy was used for direct visualization of the spontaneous dynamics of CENP-A nucleosomes at the sub-second time scale. We report that CENP-A nucleosomes change conformation spontaneously and reversibly, utilizing two major pathways: unwrapping, and looping of the DNA; enabling core transfer between neighboring DNA substrates. Along with these nucleosome dynamics we observed that CENP-A stabilizes the histone core against dissociating to histone subunits upon unwrapping DNA, unique from H3 cores which are only capable of such plasticity in the presence of remodeling factors. These findings have implications for the dynamics and integrity of nucleosomes at the centromere.
机译:在没有功能升级的Centromere的情况下,染色体的偏析变为异常,导致非整倍性率增加。 Kinetochores对中心的高度具体识别表明,具体的结构特征定义了该地区,然而,这种认可的结构细节和机制仍然是一个激烈的调查问题。为了解决这一点,高速原子力显微镜用于在秒第二刻度下直接可视化CENP-A核素的自发动态。我们认为CENP-A核体自发地改变构象,可逆地,利用两种主要途径:解除DNA的展开和循环;在相邻的DNA基板之间实现核心传递。随着这些核小组动态,我们观察到CENP-A稳定组蛋白核心在解开组蛋白亚基,在解开DNA时,从H3芯中独特,该核心仅能够在存在重塑因子存在下具有这种可塑性。这些发现对Centromere的核肉动态和完整性有影响。

著录项

  • 来源
    《Nucleic Acids Research》 |2018年第1期|共10页
  • 作者单位

    Univ Nebraska Med Ctr Dept Pharmaceut Sci 986025 Nebraska Med Ctr Omaha NE 68198 USA;

    Univ Nebraska Med Ctr Dept Pharmaceut Sci 986025 Nebraska Med Ctr Omaha NE 68198 USA;

    Univ Nebraska Med Ctr Dept Pharmaceut Sci 986025 Nebraska Med Ctr Omaha NE 68198 USA;

    Univ Nebraska Med Ctr Dept Pharmaceut Sci 986025 Nebraska Med Ctr Omaha NE 68198 USA;

    Univ Nebraska Med Ctr Dept Pharmaceut Sci 986025 Nebraska Med Ctr Omaha NE 68198 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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