Eis P S, Smith J A, Rydzewski J M, Case D A, Boger D L, Chazin W J
Department of Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
J Mol Biol. 1997 Sep 19;272(2):237-52. doi: 10.1006/jmbi.1997.1223.
The three-dimensional solution structure of duocarmycin SA in complex with d-(G1ACTAATTGAC11).d-(G12TCATTAGTC22) has been determined by restrained molecular dynamics and relaxation matrix calculations using experimental NOE distance and torsion angle constraints derived from 1H NMR spectroscopy. The final input data consisted of a total of 858 distance and 189 dihedral angle constraints, an average of 46 constraints per residue. In the ensemble of 20 final structures, there were no distance constraint violations >0.06 A or torsion angle violations >0.8 degrees. The average pairwise root mean square deviation (RMSD) over all 20 structures for the binding site region is 0.57 A (average RMSD from the mean: 0.39 A). Although the DNA is very B-like, the sugar-phosphate backbone torsion angles beta, epsilon, and zeta are distorted from standard values in the binding site region. The structure reveals site-specific bonding of duocarmycin SA at the N3 position of adenine 19 in the AT-rich minor groove of the duplex and binding stabilization via hydrophobic interactions. Comparisons have been made to the structure of a closely related complex of duocarmycin A bound to an AT-rich DNA duplex. These results provide insights into critical aspects of the alkylation site selectivity and source of catalysis of the DNA alkylating agents, and the unusual stability of the resulting adducts.
通过使用源自1H NMR光谱的实验性NOE距离和扭转角约束,经受限分子动力学和弛豫矩阵计算,已确定了多卡霉素SA与d-(G1ACTAATTGAC11).d-(G12TCATTAGTC22)复合物的三维溶液结构。最终输入数据总共包括858个距离约束和189个二面角约束,平均每个残基有46个约束。在20个最终结构的集合中,不存在距离约束违反>0.06 Å或扭转角违反>0.8度的情况。结合位点区域所有20个结构的平均成对均方根偏差(RMSD)为0.57 Å(相对于平均值的平均RMSD:0.39 Å)。尽管DNA非常类似B型,但在结合位点区域,糖-磷酸主链的扭转角β、ε和ζ偏离了标准值。该结构揭示了多卡霉素SA在双链体富含AT的小沟中腺嘌呤19的N3位置的位点特异性结合以及通过疏水相互作用实现的结合稳定化。已将其与多卡霉素A与富含AT的DNA双链体紧密相关复合物的结构进行了比较。这些结果为DNA烷基化剂的烷基化位点选择性和催化来源以及所得加合物的异常稳定性的关键方面提供了见解。