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抗Z-DNA抗体对B-DNA-Z-DNA平衡的影响。

The effect of anti-Z-DNA antibodies on the B-DNA-Z-DNA equilibrium.

作者信息

Lafer E M, Sousa R, Ali R, Rich A, Stollar B D

出版信息

J Biol Chem. 1986 May 15;261(14):6438-43.

PMID:3700399
Abstract

Four different preparations of rabbit and goat anti-Z-DNA antibodies were examined to determine the effects of antibody binding on the B-DNA-Z-DNA equilibrium. One of the four antibodies, a goat IgG, caused a marked lowering in the ionic strength required for the B-DNA to Z-DNA transition in poly(dG-dC) X poly(dG-dC), shifting the midpoint from 2.25 to 2.0 M NaCl. This IgG had a more prominent high affinity antibody population than did the other goat IgG, which caused little change in the midpoint of this transition. The presence of anti-Z-DNA antibodies also reduced the degree of negative supercoiling required for the formation of Z-DNA in (dG-dC)n sequences inserted into closed circular plasmid DNA. The goat IgG with the more marked effect on the salt-induced transition also had a greater effect in favoring Z-DNA formation in negatively supercoiled plasmids. A shift toward Z-DNA formation was observed in circular dichroism measurements upon antibody binding to poly(dG-dC) X poly(dG-dC) in very low ionic strength solution as well. We propose that the stabilization of Z-DNA by antibody binding in poly(dG-dC) X poly(dG-dC) occurs cooperatively, several antibody molecules binding to a single polymer molecule and stabilizing the entire molecule in Z-DNA through their combined binding energies. The stabilization of Z-DNA by antibody binding in a supercoiled plasmid can be significant, and failure to consider this effect and to choose appropriate conditions for measurement can lead to errors in estimating when Z-DNA will form in response to negative supercoiling.

摘要

检测了四种不同的兔和山羊抗Z-DNA抗体制剂,以确定抗体结合对B-DNA-Z-DNA平衡的影响。四种抗体中的一种,即山羊IgG,导致聚(dG-dC)×聚(dG-dC)中B-DNA向Z-DNA转变所需的离子强度显著降低,中点从2.25 M NaCl移至2.0 M NaCl。与另一种对转变中点几乎没有影响的山羊IgG相比,这种IgG具有更显著的高亲和力抗体群体。抗Z-DNA抗体的存在也降低了插入闭环质粒DNA的(dG-dC)n序列中形成Z-DNA所需的负超螺旋程度。对盐诱导转变影响更显著的山羊IgG在促进负超螺旋质粒中Z-DNA形成方面也有更大的作用。在极低离子强度溶液中,抗体与聚(dG-dC)×聚(dG-dC)结合后,圆二色性测量中也观察到向Z-DNA形成的转变。我们提出,抗体在聚(dG-dC)×聚(dG-dC)中结合对Z-DNA的稳定作用是协同发生的,几个抗体分子与单个聚合物分子结合,并通过它们的结合能总和将整个分子稳定在Z-DNA中。抗体在超螺旋质粒中结合对Z-DNA的稳定作用可能很显著,不考虑这种效应并选择合适的测量条件可能会导致在估计负超螺旋时Z-DNA何时形成时出现误差。

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