Shiber M C, Braswell E H, Klump H, Fresco J R
Department of Molecular Biology, Princeton University, NJ 08544-1014, USA.
Nucleic Acids Res. 1996 Dec 15;24(24):5004-12. doi: 10.1093/nar/24.24.5004.
d(A-G)10 forms two helical structures at neutrality, at low ionic strength a single-hairpin duplex, and at higher ionic strength a double-hairpin tetraplex. An ionic strength-dependent equilibrium between these forms is indicated by native PAGE, which also reveals additional single-stranded species below 0.3 M Na+, probably corresponding to partially denatured states. The equilibrium also depends upon oligomer concentration: at very low concentrations, d(A-G)10 migrates faster than the random coil d(C-T)10, probably because it is a more compact single hairpin; at high concentrations, it co-migrates with the linear duplex d(A-G)10 x d(C-T)10, probably because it is a two-hairpin tetraplex. Molecular weights measured by equilibrium sedimentation in 0.1 M Na+, pH 7, reveal a mixture of monomer and dimer species at 1 degree C, but only a monomer at 40 degrees C; in 0.6 M Na+, pH 7, only a dimer species is observed at 4 degrees C. That the single- and double-stranded species are hairpin helices, is indicated by preferential S1 nuclease cleavage at the center of the oligomer(s), i.e., the loop of the hairpin(s). The UV melting transition below 0.3 M Na+ or K+, exhibits a dTm/dlog[Na+/K+] of 33 or 36 degrees C, respectively, consistent with conversion of a two-hairpin tetraplex to a single-hairpin duplex with extrahelical residues. When [Na+/K+] > or = 0.3 M, dTm/dlog [Na+/K+] is 19 or 17 degrees C, respectively, consistent with conversion of a two-hairpin tetraplex directly to single strands. A two-hairpin structure stabilized by G-tetrads is indicated by differential scanning calorimetry in 0.15 M Na+/5 mM Mg2+, with deltaH of formation per mole of the two-hairpin tetraplex of -116.9 kcal or -29.2 kcal/mol of G-tetrad.
d(A-G)10在中性条件下形成两种螺旋结构,在低离子强度下形成单发卡双链体,在较高离子强度下形成双发卡四链体。天然聚丙烯酰胺凝胶电泳显示这些形式之间存在离子强度依赖性平衡,该电泳还揭示了在0.3 M Na+以下存在额外的单链物种,可能对应于部分变性状态。这种平衡还取决于寡聚物浓度:在非常低的浓度下,d(A-G)10的迁移速度比无规卷曲的d(C-T)10快,可能是因为它是更紧凑的单发卡;在高浓度下,它与线性双链体d(A-G)10×d(C-T)10共迁移,可能是因为它是双发卡四链体。在0.1 M Na+、pH 7条件下通过平衡沉降法测得的分子量显示,在1℃时存在单体和二聚体物种的混合物,但在40℃时只有单体;在0.6 M Na+、pH 7条件下,在4℃时仅观察到二聚体物种。单链和双链物种是发卡螺旋这一点,通过在寡聚物中心(即发卡的环)优先被S1核酸酶切割得以表明。在0.3 M Na+或K+以下的紫外熔解转变,dTm/dlog[Na+/K+]分别为33或36℃,这与双发卡四链体转变为带有螺旋外残基的单发卡双链体一致。当[Na+/K+]≥0.3 M时,dTm/dlog[Na+/K+]分别为19或17℃,这与双发卡四链体直接转变为单链一致。在0.15 M Na+/5 mM Mg2+条件下的差示扫描量热法表明存在由G-四联体稳定的双发卡结构,每摩尔双发卡四链体的形成焓为-116.9 kcal或每摩尔G-四联体为-29.2 kcal/mol。