Palecek E, Brázdová M, Cernocká H, Vlk D, Brázda V, Vojtesek B
Institute of Biophysics, Academy of Sciences of the Czech Republic, Brno.
Oncogene. 1999 Jun 17;18(24):3617-25. doi: 10.1038/sj.onc.1202710.
Recently we have shown that wild-type human p53 protein binds preferentially to supercoiled (sc) DNA in vitro in both the presence and absence of the p53 consensus sequence (p53CON). This binding produces a ladder of retarded bands on an agarose gel. Using immunoblotting with the antibody DO-1, we show that the bands obtained correspond to ethidium-stained DNA, suggesting that each band of the ladder contains a DNA-p53 complex. The intensity and the number of these hands are decreased by physiological concentrations of zinc ions. At higher zinc concentrations, binding of p53 to scDNA is completely inhibited. The binding of additional zinc ions to p53 appears much weaker than the binding of the intrinsic zinc ion in the DNA binding site of the core domain. In contrast to previously published data suggesting that 100 microM zinc ions do not influence p53 binding to p53CON in a DNA oligonucleotide, we show that 5-20 microM zinc efficiently inhibits binding of p53 to p53CON in DNA fragments. We also show that relatively low concentrations of dithiothreitol but not of 2-mercaptoethanol decrease the concentration of free zinc ions, thereby preventing their inhibitory effect on binding of p53 to DNA. Nickel and cobalt ions inhibit binding of p53 to scDNA and to its consensus sequence in linear DNA fragments less efficiently than zinc; cobalt ions are least efficient, requiring >100 microM Co2+ for full inhibition of p53 binding. Modulation of binding of p53 to DNA by physiological concentrations of zinc might represent a novel pathway that regulates p53 activity in vivo.
最近我们发现,在体外,无论有无p53共有序列(p53CON),野生型人p53蛋白都优先与超螺旋(sc)DNA结合。这种结合在琼脂糖凝胶上产生一系列滞后条带。使用抗体DO-1进行免疫印迹,我们发现所获得的条带与溴化乙锭染色的DNA相对应,这表明梯状条带中的每条带都包含一个DNA-p53复合物。生理浓度的锌离子会降低这些条带的强度和数量。在较高的锌浓度下,p53与scDNA的结合被完全抑制。额外的锌离子与p53的结合似乎比核心结构域DNA结合位点中的固有锌离子的结合弱得多。与之前发表的数据表明100 microM锌离子不影响p53与DNA寡核苷酸中的p53CON结合相反,我们发现5-20 microM锌能有效抑制p53与DNA片段中p53CON的结合。我们还发现,相对低浓度的二硫苏糖醇而非2-巯基乙醇会降低游离锌离子的浓度,从而防止它们对p53与DNA结合的抑制作用。镍离子和钴离子抑制p53与scDNA及其在线性DNA片段中共识序列结合的效率低于锌离子;钴离子效率最低,完全抑制p53结合需要>100 microM Co2+。生理浓度的锌对p53与DNA结合的调节可能代表了一种在体内调节p53活性的新途径。