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Rigidity of a spherical capsule switches the localization of encapsulated particles between inner and peripheral regions under crowding condition: Simple model on cellular architecture

机译:球形胶囊的刚度在拥挤条件下在内部和外围区域之间切换封装颗粒的定位:细胞结构的简单模型

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摘要

We have investigated the inhomogeneous interior of confined spherical cavities as capsules containing encapsulated binary hard sphere mixtures for different compositions and cavity wall rigidity. Such a greatly simplified model manifests the effects of macromolecular crowding arising from excluded volume interactions in a tiny cell or a cellular nucleus. By fixing the number of large particles, the level of crowding is adjusted by changing the amount of small hard spheres in the cavity. For a rigid cavity, large spheres tend to pack in liquid-like order apart from the surface to the center of the cavity as the crowding level is increased. Whereas, for a soft cavity, larger spheres tend to blend with small spheres in the peripheral region at near the boundary of the cavity, and are susceptible to be depleted from the interior of the cavity as the cavity becomes more crowded. These results may help future elucidation of the thermodynamic pathways to stabilize the inhomogeneous structure of mixtures confined in cavities, such as the derepression of genome materials around the interior rim of the nucleus in a cancerous cell.
机译:我们已经研究了密闭球形腔体的内部不均匀性,这些腔体包含胶囊封装的二元硬球混合物,具有不同的成分和腔壁刚度。这种大大简化的模型显示了由于微小细胞或细胞核中排除的体积相互作用而引起的大分子拥挤效应。通过固定大颗粒的数量,可以通过更改空腔中小的硬球的数量来调整拥挤程度。对于刚性腔,随着拥挤程度的增加,大的球体往往以液体状堆积,从腔的表面到中心。而对于软腔,较大的球体倾向于在腔体边界附近的外围区域中与小球体融合,并且随着腔体变得更拥挤而易于从腔体内部耗尽。这些结果可能有助于将来阐明热力学途径,以稳定局限于腔中的混合物的不均匀结构,例如癌细胞中细胞核内部边缘周围的基因组物质的抑制。

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