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核小体畸变对松弛型微型染色体连接缺陷的影响。

Effect of nucleosome distortion on the linking deficiency in relaxed minichromosomes.

作者信息

White J H, Gallo R, Bauer W R

机构信息

Department of Mathematics, University of California, Los Angeles 90024.

出版信息

J Mol Biol. 1989 May 5;207(1):193-9. doi: 10.1016/0022-2836(89)90450-6.

Abstract

The wrapping of closed circular DNA on a protein surface, followed by relaxation with a topoisomerase and removal of proteins, produces a characteristic DNA linking deficiency, delta Lk. We show that the magnitude of delta Lk depends upon the surface shape, and we calculate changes in delta Lk caused by particular distortions of the protein wrapping surface. If the DNA remains attached to the surface during distortion, the DNA winding number, phi, is not altered. The change in delta Lk is then equal to the change in the surface linking number, SLk, which is a straightforward measure of the wrapping of the DNA around the surface. For left-handed wrapping, as in a nucleosome, SLk = -n, the number of times that the DNA axis winds around the axis of the protein complex. We calculate values of SLk for the helical wrapping of a constant length of DNA on protein surfaces having the shapes of cylinders and of ellipsoids and hyperboloids of revolution. If the equatorial radius of the protein is fixed, change in shape from a cylinder to a hyperboloid increases SLk, while the corresponding change to an ellipsoid reduces SLk. We apply the general results to the interpretation of experiments in which minichromosomes are relaxed with topoisomerase at various temperatures and delta Lk is determined. The result is that a distortion of the nucleosome core by at most 5% (the change in the radius at the axial extremity relative to the equator) is sufficient to explain the observed delta Lk changes.

摘要

将闭环双链DNA包裹在蛋白质表面,随后用拓扑异构酶使其松弛并去除蛋白质,会产生特征性的DNA连接数亏缺,即ΔLk。我们发现,ΔLk的大小取决于表面形状,并且计算了蛋白质包裹表面特定变形所引起的ΔLk变化。如果在变形过程中DNA仍附着于表面,则DNA的缠绕数ϕ不会改变。此时,ΔLk的变化等于表面连接数SLk的变化,而SLk是DNA围绕表面缠绕情况的直接度量。对于左手缠绕,如在核小体中,SLk = -n,其中n为DNA轴围绕蛋白质复合体轴缠绕的次数。我们计算了一定长度的DNA在具有圆柱、椭球和旋转双曲面形状的蛋白质表面上进行螺旋缠绕时的SLk值。如果蛋白质的赤道半径固定,从圆柱体变为双曲面的形状变化会增加SLk,而变为椭球体的相应变化则会降低SLk。我们将这些一般性结果应用于对实验的解释中,在这些实验中,微型染色体在不同温度下用拓扑异构酶松弛,并测定ΔLk。结果表明,核小体核心最多5%的变形(轴向末端相对于赤道的半径变化)就足以解释观察到的ΔLk变化。

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