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限制和拥挤控制着模型细菌染色体的形态和动力学。

Confinement and crowding control the morphology and dynamics of a model bacterial chromosome.

机构信息

Indian Institute of Technology Hyderabad, Kandi, Sangareddy 502285, Telangana, India.

出版信息

Soft Matter. 2019 Mar 20;15(12):2677-2687. doi: 10.1039/c8sm02092b.

Abstract

Motivated by recent experiments probing the shape, size and dynamics of bacterial chromosomes in growing cells, we consider a polymer model consisting of a circular backbone to which side-loops are attached, confined to a cylindrical cell. Such a model chromosome spontaneously adopts a helical shape, which is further compacted by molecular crowders to occupy a nucleoid-like sub-volume of the cell. With increasing cell length, the longitudinal size of the chromosome increases in a non-linear fashion until finally saturating, its morphology gradually opening up while displaying a changing number of helical turns. For shorter cells, the chromosome extension varies non-monotonically with cell size, which we show is associated with a radial to longitudinal spatial reordering of the crowders. Confinement and crowders constrain chain dynamics leading to anomalous diffusion. While the scaling exponent for the mean squared displacement of center of mass grows and saturates with cell length, that of individual loci displays a broad distribution with a sharp maximum.

摘要

受近期研究细菌染色体在生长细胞中形态、大小和动力学的实验启发,我们考虑了一个聚合物模型,该模型由一个圆形骨架组成,骨架上附着有侧环,限制在一个圆柱形细胞内。这种模型染色体自发地呈现出螺旋形状,通过分子拥挤进一步压缩,占据细胞类似核小体的亚体积。随着细胞长度的增加,染色体的纵向尺寸呈非线性增加,直到最终饱和,其形态逐渐展开,同时显示出不断变化的螺旋匝数。对于较短的细胞,染色体的延伸与细胞大小的变化是非单调的,我们表明这与拥挤物的径向到纵向空间重新排列有关。限制和拥挤物限制链的动力学,导致异常扩散。虽然质心的均方位移的标度指数随着细胞长度的增加而增长并饱和,但个别位置的标度指数分布广泛,具有一个尖锐的最大值。

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