Haasnoot C A, Westerink H P, van der Marel G A, van Boom J H
Department of Biophysical Chemistry, Faculty of Science, University of Nijmegen, The Netherlands.
J Biomol Struct Dyn. 1984 Oct;2(2):345-60. doi: 10.1080/07391102.1984.10507572.
The solution structure of two double helical nucleic acid fragments, viz, r(CGCGCG) and d(CGCGCG), was probed by means of two-dimensional nuclear Overhauser effect spectroscopy. The two compounds were selected as models for the A-type and B-type double helical conformations, respectively, and it is shown that for each of the two model compounds the intensities of the NOE cross peaks between base- and H2' (deoxy)ribose proteins are qualitatively in correspondence with the relative NOE intensities expected on basis of the supposed duplex conformations. Thus our results indicate that NOE-data can be used to differentiate between A-and B-type double helical conformations in solution. Coupling constant data show that, except for G(6), all ribose rings in r(CGCGCG) adopt pure N (C3'-endo) conformations thereby manifesting that this molecule takes up a regular A-type double helical conformation in solution. In contrast, the deoxyribose rings in d(CGCGCG) retain conformational freedom in the duplex state, albeit that the N/S-equilibrium is biased towards the S (C2'-endo) sugar conformation. This finding indicates that in solution the B-DNA backbone is highly dynamic.
通过二维核Overhauser效应光谱法探究了两个双螺旋核酸片段,即r(CGCGCG)和d(CGCGCG)的溶液结构。这两种化合物分别被选作A型和B型双螺旋构象的模型,结果表明,对于这两种模型化合物中的每一种,碱基与H2'(脱氧)核糖质子之间的核Overhauser效应(NOE)交叉峰强度在定性上与基于假定双链体构象预期的相对NOE强度一致。因此,我们的结果表明,NOE数据可用于区分溶液中的A型和B型双螺旋构象。耦合常数数据表明,除了G(6)之外,r(CGCGCG)中的所有核糖环均采用纯N(C3'-内向)构象,从而表明该分子在溶液中呈规则的A型双螺旋构象。相反,d(CGCGCG)中的脱氧核糖环在双链体状态下保留构象自由度,尽管N/S平衡偏向于S(C2'-内向)糖构象。这一发现表明,在溶液中B-DNA主链具有高度动态性。