Chen F M
Nucleic Acids Res. 1986 Jun 25;14(12):5081-97. doi: 10.1093/nar/14.12.5081.
The remarkable conformational lability of poly(dG-m5dC):poly(dG-m5dC) is demonstrated by the observation of an acid-mediated conformational hysteresis. An acid-mediated Z conformation that exists in solutions containing low sodium concentrations that would normally favor the B conformation is described in this report. This Z conformation is reached by an acid-base titration of a B-poly(dG-m5dC):poly(dG-m5dC) solution which is not far from the B-Z transition midpoint. The resulting Z conformation is thermally very stable, with direct melting into single strands at approximately 100 degrees C. In contrast, the B form DNA, initially in solutions of the same ionic strength but without exposure to acidic pH, exhibits a biphasic melting profile, with conversion into the Z form (with high cooperativity) prior to an eventual denaturation into single strands at around 100 degrees C. Cooling experiments reveal that such biphasic transitions are quite reversible. The transition midpoint for the thermally poised B to Z transformation depends strongly on the NaCl concentration and varies with sample batch. The acid-mediated Z form binds ethidium more weakly than its B counterpart, and the ethidium induced Z to B conversion occurs in a step-wise (non-allosteric) fashion without the requirement of a threshold concentration. The acid-mediated as well as the thermally poised Z conformations are reversed by the addition of EDTA, suggesting the involvement of trace amounts of multivalent metal ions.
聚(dG-m5dC):聚(dG-m5dC)显著的构象不稳定性通过酸介导的构象滞后现象得到证明。本报告描述了一种在通常有利于B构象的低钠浓度溶液中存在的酸介导Z构象。这种Z构象是通过对接近B-Z转变中点的B型聚(dG-m5dC):聚(dG-m5dC)溶液进行酸碱滴定得到的。所得的Z构象热稳定性非常高,在约100℃时直接熔解为单链。相比之下,最初处于相同离子强度但未暴露于酸性pH值溶液中的B型DNA呈现出双相熔解曲线,在最终于约100℃变性为单链之前先转变为Z型(具有高协同性)。冷却实验表明这种双相转变是完全可逆的。热平衡状态下B向Z转变的中点强烈依赖于NaCl浓度且随样品批次而变化。酸介导的Z型与溴化乙锭的结合比其B型对应物弱,并且溴化乙锭诱导的Z向B转变以逐步(非别构)方式发生,不需要阈值浓度。加入EDTA可使酸介导的以及热平衡的Z构象逆转,这表明痕量多价金属离子参与其中。