Vorlickova M, Sagi J, Szabolcs A, Szemzo A, Otvos L, Kypr J
Institute of Biophysics Czechoslovak Academy of Sciences Brno.
J Biomol Struct Dyn. 1988 Dec;6(3):503-10. doi: 10.1080/07391102.1988.10506503.
It is demonstrated that a two-state conformational isomerization is induced in the poly(amino2-dA-dT) duplex by submillimolar concentrations of divalent magnesium cations in low-salt aqueous solution. The isomerization is fast and has a low degree of cooperativity. The resulting conformer is the unusual X-DNA double helix originally observed with poly(dA-dT) at very high concentrations of CsF. Interestingly, the X form is induced in poly(amino2dA-dT) under the physiological conditions when poly(dG-methyl5dC) assumes Z-DNA. The same conditions of stabilization are presumably connected with the fact, observed in previous phosphorus NMR studies, that Z- and X-DNA have similar polydinucleotide backbone architectures. Results presented in this work permit to specify base pair exocyclic groups responsible for the radically different conformational variability of the synthetic DNA molecules containing alternating purine-pyrimidine sequences of GC or AT base pairs.
结果表明,在低盐水溶液中,亚毫摩尔浓度的二价镁阳离子可诱导聚(氨基2-dA-dT)双链体发生双态构象异构化。这种异构化速度很快,协同性程度较低。所产生的构象异构体是最初在非常高浓度的CsF条件下用聚(dA-dT)观察到的不寻常的X-DNA双螺旋。有趣的是,当聚(dG-甲基5dC)呈现Z-DNA时,在生理条件下聚(氨基2dA-dT)中会诱导形成X型。推测相同的稳定化条件与先前磷核磁共振研究中观察到的事实有关,即Z-DNA和X-DNA具有相似的聚二核苷酸主链结构。这项工作中呈现的结果有助于明确负责含GC或AT碱基对交替嘌呤-嘧啶序列的合成DNA分子构象变异性差异极大的碱基对环外基团。