首页> 美国卫生研究院文献>Biophysical Journal >Liquid crystalline ordering of nucleosome core particles under macromolecular crowding conditions: evidence for a discotic columnar hexagonal phase.
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Liquid crystalline ordering of nucleosome core particles under macromolecular crowding conditions: evidence for a discotic columnar hexagonal phase.

机译:大分子拥挤条件下核小体核心颗粒的液晶排序:盘状柱状六角相的证据。

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摘要

Macromolecular crowding conditions occurring inside the cell nucleus were reproduced experimentally with solutions of mononucleosome core particles to study their supramolecular organization. We report here that under these conditions, and over a large range of monovalent salt concentrations, mononucleosome core particles self-assemble to form a discotic liquid crystalline phase characterized in polarizing and freeze-fracture electron microscopy. Mononucleosomes are stacked on each other to form columns, which are themselves closely packed into an hexagonal array. The nucleosome concentration, estimated from the network parameters, falls in the range of values measured in cell nuclei. We suggest that these concentrated solutions, although their organization cannot be immediately compared to the organization of chromatin in vivo, may be used to investigate the nucleosome-nucleosome interactions. Furthermore, this approach may be complexified to take into account the complexity of the eucaryotic chromatin.
机译:用单核小体核心颗粒的溶液通过实验再现了细胞核内部发生的大分子拥挤情况,以研究其超分子组织。我们在这里报告,在这些条件下,以及在较大范围的单价盐浓度范围内,单核小体核心颗粒自组装形成盘状液晶相,其特征在于极化和冷冻断裂电子显微镜。单核小体相互堆叠以形成圆柱,圆柱本身紧密堆积成六边形阵列。从网络参数估计的核小体浓度落在细胞核中测量的值范围内。我们建议这些浓缩的溶液,虽然不能立即将其组织与体内染色质的组织进行比较,但可以用于研究核小体与核小体的相互作用。此外,考虑到真核染色质的复杂性,可以使该方法复杂化。

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