Sastry M, Fiala R, Patel D J
Department of Biochemistry and Molecular Biophysics, College of Physicians and Surgeons, Columbia University, New York, NY 10032, USA.
J Mol Biol. 1995 Sep 1;251(5):674-89. doi: 10.1006/jmbi.1995.0464.
Mithramycin (MTH) is a DNA-binding antitumor agent containing A-B disaccharide and C-D-E trisaccharide segments projecting from opposite ends of an aglycone chromophore. We have previously reported on the solution structure of the MTH-DNA 6-mer complex based on a combined NMR and molecular dynamics study. This study established that the Mg(2+)-coordinated mithramycin dimer bound to a widened minor groove centered about the sequence-specific (G-C).(G-C) site and that the C-D-E trisaccharide segments from individual monomers were directed towards opposite ends of the helix spanning a six base-pair segment. This research is now extended to the binding of mithramycin dimers to partially overlapping sites on the self-complementary d(T-A-G-C-T-A-G-C-T-A) 10-mer duplex. The six base-pair mithramycin dimer footprint centered about (G-C).(G-C) steps should result in a potential steric clash in the center of the helix involving the inwardly pointing E-sugars of the pair of mithramycin dimers bound to the DNA 10-mer duplex. The MTH-d(T-A-G-C-T-A-G-C-T-A) complex (two MTH dimers per duplex) yields narrow and well-resolved NMR spectra, which have been assigned to identify intramolecular and intermolecular nuclear Overhauser enhancement (NOE) connectivities in the complex. The solution structure of the MTH-DNA 10-mer complex based on distance-restrained molecular dynamics calculations has defined the conformation of the drug and the DNA necessary for accommodation of the pair of mithramycin dimers on the DNA 10-mer helix. Specifically, the inwardly pointing E-sugars retain their face-down alignment towards the floor of the minor groove and occupy adjacent binding sites in the center of the duplex. This is achieved, in part, through torsion angle differences in the glycosidic linkage bonds along the length of the inwardly pointing aglycone-C-D-E trisaccharide segment relative to its outwardly pointing aglycone-C-D-E trisaccharide counterpart in the complex. In addition, a pronounced kink at the central (T-A).(T-A) step opens the minor groove and generates additional space to accommodate the inwardly pointing E-sugars at adjacent sites in the MTH-DNA 10-mer complex. These studies establish conformational plasticity in the C-D-E trisaccharide segment of the mithramycin dimer and deformability of the DNA helix allowing mithramycin dimers to bind to partially overlapping minor groove sites on the DNA helix.
光神霉素(MTH)是一种DNA结合抗肿瘤剂,含有从糖苷配基发色团相对两端伸出的A - B二糖和C - D - E三糖片段。我们之前基于核磁共振(NMR)和分子动力学联合研究报道了MTH - DNA六聚体复合物的溶液结构。该研究确定,与以序列特异性(G - C).(G - C)位点为中心的变宽小沟结合的是Mg(2+)配位的光神霉素二聚体,并且来自各个单体的C - D - E三糖片段指向跨越六个碱基对片段的螺旋相对两端。现在这项研究扩展到光神霉素二聚体与自互补d(T - A - G - C - T - A - G - C - T - A)十聚体双链体上部分重叠位点的结合。以(G - C).(G - C)步为中心的六个碱基对光神霉素二聚体足迹应该会在螺旋中心导致潜在的空间冲突,涉及与DNA十聚体双链体结合的一对光神霉素二聚体向内指向的E - 糖。MTH - d(T - A - G - C - T - A - G - C - T - A)复合物(每个双链体两个MTH二聚体)产生窄且分辨率良好的NMR谱,已对其进行归属以确定复合物中的分子内和分子间核Overhauser增强(NOE)连接性。基于距离约束分子动力学计算的MTH - DNA十聚体复合物的溶液结构确定了药物和DNA的构象,这对于光神霉素二聚体对在DNA十聚体螺旋上的容纳是必要的。具体而言,向内指向的E - 糖保持其面朝下朝向小沟底部的排列,并占据双链体中心的相邻结合位点。这部分是通过相对于复合物中向外指向的糖苷配基 - C - D - E三糖对应物,沿着向内指向的糖苷配基 - C - D - E三糖片段长度的糖苷键扭转角差异实现的。此外,在中心(T - A).(T - A)步处的明显扭结打开了小沟,并产生了额外空间以容纳MTH - DNA十聚体复合物中相邻位点处向内指向的E - 糖。这些研究确定了光神霉素二聚体C - D - E三糖片段中的构象可塑性以及DNA螺旋的可变形性,使得光神霉素二聚体能够结合到DNA螺旋上部分重叠的小沟位点。