Hamelberg D, Williams L D, Wilson W D
Department of Chemistry, Georgia State University, Atlanta, Georgia 30303, USA.
J Am Chem Soc. 2001 Aug 15;123(32):7745-55. doi: 10.1021/ja010341s.
Different models for minor groove structures predict that the conformation is essentially fixed by sequence and has an influence on local ion distribution or alternatively that temporal positions of ions around the minor groove can affect the structure if they neutralize cross-strand phosphate charges. Our previous studies show that the minor groove in an AATT dodecamer responds to local sodium ion positions and is narrow when ions neutralize cross-strand phosphate-phosphate charges [J. Am. Chem. Soc. 2000, 122, 10513-10520]. Previous results from a number of laboratories have shown that G-tracts often have a wider minor groove than A-tracts, but they do not indicate whether this is due to reduced flexibility or differences in ion interactions. We have undertaken a molecular dynamics study of a d(TATAGGCCTATA) duplex to answer this question. The results show that the G-tract has the same amplitude of minor groove fluctuations as the A-tract sequence but that it has fewer ion interactions that neutralize cross-strand phosphate charges. These results demonstrate that differences in time-average groove width between A- and G-tracts are due to differences in ion interactions at the minor groove. When ions neutralize the cross-strand phosphates, the minor groove is narrow. When there are no neutralizing ion interactions, the minor groove is wide. The population of structures with no ion interactions is larger with the GGCC than with the AATT duplex, and GGCC has a wider time-average minor groove in agreement with experiment.
不同的小沟结构模型预测,其构象基本上由序列固定,并对局部离子分布有影响;或者,如果离子在小沟周围的瞬时位置中和了跨链磷酸基团的电荷,那么这些位置会影响小沟的结构。我们之前的研究表明,AATT十二聚体中的小沟会响应局部钠离子的位置,当离子中和跨链磷酸-磷酸基团的电荷时,小沟会变窄[《美国化学会志》2000年,第122卷,第10513 - 10520页]。许多实验室之前的结果表明,G片段的小沟通常比A片段的宽,但它们并未表明这是由于柔韧性降低还是离子相互作用的差异所致。我们对d(TATAGGCCTATA)双链体进行了分子动力学研究以回答这个问题。结果表明,G片段的小沟波动幅度与A片段序列相同,但中和跨链磷酸基团电荷的离子相互作用较少。这些结果表明,A片段和G片段之间时间平均小沟宽度的差异是由于小沟处离子相互作用的不同。当离子中和跨链磷酸基团时,小沟变窄。当不存在中和离子相互作用时,小沟变宽。与AATT双链体相比,GGCC没有离子相互作用的结构群体更大,并且GGCC的时间平均小沟更宽,这与实验结果一致。