Boulard Y, Cognet J A, Gabarro-Arpa J, Le Bret M, Carbonnaux C, Fazakerley G V
CEA, Département de Biologie Cellulaire et Moléculaire Centre d'Etudes de Saclay, Gif-sur-Yvette, France.
J Mol Biol. 1995 Feb 10;246(1):194-208. doi: 10.1006/jmbi.1994.0076.
The DNA duplex 5' d(GCCACCAGCTC)-d(GAGCTGGTGGC) corresponds to the sequence 29 to 39 of the K-ras gene, which contains a hot spot for mutations. This has been studied by one and two-dimensional nuclear magnetic resonance, energy minimization and molecular dynamics. The results show that it adopts a globally B-DNA type structure. We have introduced, at the central base-pair, the mismatches C.A and A.G. The mismatch position is that of the first base of the Gly12 codon, the hot spot. For the C.A mismatch we observe a structural change as a function of pH with an apparent pKa of 7.2. At low pH, the mismatch pair adopts a structure close to a classic wobble conformation with the cytidine residue displaced into the major groove. It is stabilised by two hydrogen bonds in which the adenosine residue is protonated and the cytidine residue has a significant C3'-endo population. At high pH, the mispair structure is in equilibrium between wobble and reverse wobble conformations. Similar studies are reported on the A.G mismatch, which also undergoes a transition as a function of pH. 31P spectra have been recorded on all systems and as a function of pH. No evidence for BII phosphodiester backbone conformations was found. The NMR results are well corroborated by molecular dynamics calculations performed with or without distance constraints. The dynamics at the mismatch sites have been examined. Although the overall structures are close to B-DNA, helical parameters fluctuate differently at these sites. Different hydrogen bonding alternatives in dynamic equilibrium that can involve three-centred hydrogen bonds are observed.
DNA双链5'd(GCCACCAGCTC)-d(GAGCTGGTGGC)对应K-ras基因第29至39位的序列,该序列包含一个突变热点。已通过一维和二维核磁共振、能量最小化和分子动力学对此进行了研究。结果表明,它呈现出整体的B-DNA型结构。我们在中心碱基对处引入了错配C.A和A.G。错配位置是甘氨酸12密码子第一个碱基的位置,即热点位置。对于C.A错配,我们观察到其结构随pH值变化,表观pKa为7.2。在低pH值下,错配碱基对采用接近经典摆动构象的结构,胞嘧啶残基位移到了大沟中。它通过两个氢键得以稳定,其中腺苷残基质子化,胞嘧啶残基具有显著的C3'-内型构象。在高pH值下,错配结构在摆动和反向摆动构象之间处于平衡状态。关于A.G错配也有类似的研究报道,其也会随pH值发生转变。已记录了所有体系在不同pH值下的31P谱。未发现BII型磷酸二酯主链构象的证据。核磁共振结果通过有无距离限制的分子动力学计算得到了很好的证实。已对错配位点的动力学进行了研究。尽管整体结构接近B-DNA,但这些位点的螺旋参数波动情况不同。观察到了在动态平衡中不同的氢键组合,其中可能涉及三中心氢键。