Egli M, Williams L D, Gao Q, Rich A
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Biochemistry. 1991 Dec 3;30(48):11388-402. doi: 10.1021/bi00112a005.
We describe the three-dimensional X-ray structure of a complex of spermine bound to a Z-DNA duplex, [d(CGCGCG)]2, in the absence of any inorganic polyvalent cations. We have crystallized the DNA hexamer d(CGCGCG) in the exclusion of magnesium and other polyvalent ions and solved its structure at 1.0-A resolution. In the crystal of this pure-spermine form of Z-DNA, the relative orientation, position, and interactions of the DNA differ from the arrangement uniformly observed in over a dozen previously reported Z-DNA hexamers. Moreover, the conformation of the Z-DNA hexamer in this structure varies somewhat from those found in earlier structures. The DNA is compressed along the helical axis, the base pairs are shifted into the major groove, and the minor groove is more narrow. The packing of spermine-DNA complexes in crystals suggests that the molecular basis for the tendency of spermine to stabilize compact DNA structures derives from the capacity of spermine to interact simultaneously with several duplexes. This capacity is maximized by both the polymorphic nature and the length of the spermine cation. The length and flexibility of spermine and the dispersion of charge-charge, hydrogen-bonding, and hydrophobic bonding potential throughout the molecule maximize the ability of spermine to interact simultaneously with different DNA molecules.
我们描述了在不存在任何无机多价阳离子的情况下,精胺与Z-DNA双链体[d(CGCGCG)]₂形成的复合物的三维X射线结构。我们在排除镁和其他多价离子的条件下,使DNA六聚体d(CGCGCG)结晶,并以1.0埃的分辨率解析了其结构。在这种纯精胺形式的Z-DNA晶体中,DNA的相对取向、位置和相互作用与之前报道的十几种Z-DNA六聚体中一致观察到的排列不同。此外,该结构中Z-DNA六聚体的构象与早期结构中的构象略有不同。DNA沿螺旋轴被压缩,碱基对移入大沟,小沟更窄。精胺-DNA复合物在晶体中的堆积表明,精胺稳定紧密DNA结构趋势的分子基础源于精胺同时与多个双链体相互作用的能力。这种能力通过精胺阳离子的多态性和长度得以最大化。精胺的长度和灵活性以及整个分子中电荷-电荷、氢键和疏水键合潜力的分散,使精胺同时与不同DNA分子相互作用的能力最大化。