Williams L D, Frederick C A, Ughetto G, Rich A
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Nucleic Acids Res. 1990 Sep 25;18(18):5533-41. doi: 10.1093/nar/18.18.5533.
The recently developed anthracycline 4'-epiadriamycin, an anti-cancer drug with improved activity, differs from adriamycin by inversion of the stereochemistry at the 4'-position. We have cocrystallized 4'-epiadriamycin with the DNA hexamer d(CGATCG) and solved the structure to 1.5 A resolution using x-ray crystallography. One drug molecule binds at each d(CG) step of the hexamer duplex. The anthracycline sugar binds in the minor groove. A feature of this complex which distinguishes it from the earlier DNA:adriamycin complex is a direct hydrogen bond from the 4'-hydroxyl group of the anthracycline sugar to the adenine N3 on the floor of the DNA minor groove. This hydrogen bond results directly from inversion of the stereochemistry at the 4'-position. Spermine molecules bind in the major groove of this complex. In anthracycline complexes with d(CGATCG) a spermine molecule binds to a continuous hydrophobic zone formed by the 5-methyl and C6 of a thymidine, C5 and C6 of a cytidine and the chromophore of the anthracycline. This report discusses three anthracycline complexes with d(CGATCG) in which the spermine molecules have different conformations yet form extensive van der Waals contacts with the same hydrophobic zone. Our results suggest that these hydrophobic interactions of spermine are DNA sequence specific and provide insight into the question of whether DNA:spermine complexes are delocalized and dynamic or site-specific and static.
最近研发的蒽环类药物4'-表阿霉素是一种活性有所提高的抗癌药物,它与阿霉素的区别在于4'-位立体化学构型发生了翻转。我们已将4'-表阿霉素与DNA六聚体d(CGATCG)共结晶,并通过X射线晶体学将其结构解析到1.5埃的分辨率。一个药物分子结合在六聚体双链体的每个d(CG)步序处。蒽环类糖基结合在小沟中。该复合物与早期的DNA:阿霉素复合物的一个区别特征是,蒽环类糖基的4'-羟基与DNA小沟底部的腺嘌呤N3之间存在直接氢键。这种氢键直接源于4'-位立体化学构型的翻转。精胺分子结合在该复合物的大沟中。在与d(CGATCG)形成的蒽环类复合物中,一个精胺分子结合到由一个胸腺嘧啶的5-甲基和C6、一个胞嘧啶的C5和C6以及蒽环类发色团形成的连续疏水区域。本报告讨论了三种与d(CGATCG)形成的蒽环类复合物,其中精胺分子具有不同构象,但与同一疏水区域形成广泛的范德华接触。我们的结果表明,精胺的这些疏水相互作用具有DNA序列特异性,并为DNA:精胺复合物是离域动态的还是位点特异性静态的这一问题提供了见解。