Ansevin A T, Wang A H
Genetics Center, Graduate School of Biomedical Sciences, University of Texas Health Science Center, Houston 77225.
Nucleic Acids Res. 1990 Oct 25;18(20):6119-26. doi: 10.1093/nar/18.20.6119.
The structure of Z-DNA, currently accepted as a model for all left-handed DNAs, fails to provide convincing explanations for at least four well established properties of left-handed DNA polymers in solution. However, the major discrepancies between theory and experiment are resolved by the structure presently proposed for Z[WC]-DNA, a new left-handed, zig-zag double helix with Watson-Crick-type backbone directions. Structural features of Z[WC]-DNA include the presence of an additional H-bond between each guanine N2-amino group and an adjacent phosphate oxygen, the capacity to form four-stranded, base-matched complexes that should readily precipitate from solution, and backbone progressions that are the same as B-DNA (opposite to Z-DNA). However, since Z[WC]-DNA and Z-DNA have many parameters in common, they could be difficult to distinguish in a majority of existing experiments. In view of the close relationship of the new helix to B-DNA, which allows a relatively unhindered right-to-left transition in handedness, Z[WC]-DNA is theorized to be the left-handed structure preferentially generated in vivo by the torque available in naturally occurring DNA supercoils.
目前被公认为所有左手螺旋DNA模型的Z-DNA结构,对于溶液中左手螺旋DNA聚合物至少四个已确立的特性,未能给出令人信服的解释。然而,理论与实验之间的主要差异通过目前提出的Z[WC]-DNA结构得以解决,Z[WC]-DNA是一种新的左手螺旋、锯齿状双螺旋结构,其主链方向为沃森-克里克型。Z[WC]-DNA的结构特征包括:每个鸟嘌呤N2-氨基与相邻磷酸氧之间存在一个额外的氢键;能够形成四链碱基匹配复合物,这种复合物应该很容易从溶液中沉淀出来;主链走向与B-DNA相同(与Z-DNA相反)。然而,由于Z[WC]-DNA和Z-DNA有许多共同参数,在大多数现有实验中它们可能难以区分。鉴于这种新螺旋与B-DNA的密切关系,这种关系允许在螺旋方向上相对不受阻碍地从右向左转变,因此从理论上讲,Z[WC]-DNA是体内由天然存在的DNA超螺旋中的扭矩优先产生的左手螺旋结构。