Shi Y B, Griffith J, Gamper H, Hearst J E
Department of Chemistry, University of California, Berkeley 94720.
Nucleic Acids Res. 1988 Sep 26;16(18):8945-52. doi: 10.1093/nar/16.18.8945.
We have investigated the structural change in a double-stranded DNA helix caused by covalent addition of a psoralen. A synthetic double-stranded DNA was constructed to contain either a psoralen furan-side monoadduct or an interstrand diadduct at a specific site. When the unmodified and psoralen modified DNAs were examined by electron microscopy in the presence of distamycin, which stiffens the DNA helix, the DNA containing the psoralen interstrand diadduct appeared bent (or kinked), whereas the furan-side monoadducted DNA appeared similar to the unmodified DNA. RecA protein from E. coli has been shown to preferentially bind UV (ultra violet) irradiated DNA presumably due to alterations in the normal DNA helical structure. Using a nitrocellulose filter binding assay, we have found that the psoralen interstrand diadduct enhances the binding of recA protein to the double-stranded DNA, whereas a furan-side monoadduct has little effect. Thus both the recA protein binding and the electron microscopic data suggest that a psoralen diadduct causes deformation of a DNA helix, most likely by kinking the helix, and that a monoadduct has little effect on the DNA helix structure.
我们研究了补骨脂素共价加成导致的双链DNA螺旋结构变化。构建了一种合成双链DNA,使其在特定位点含有补骨脂素呋喃侧单加合物或链间双加合物。当在能使DNA螺旋变硬的Distamycin存在下通过电子显微镜检查未修饰的和补骨脂素修饰的DNA时,含有补骨脂素链间双加合物的DNA出现弯曲(或扭结),而呋喃侧单加合的DNA看起来与未修饰的DNA相似。大肠杆菌的RecA蛋白已被证明优先结合紫外线照射的DNA,这可能是由于正常DNA螺旋结构发生了改变。通过硝酸纤维素滤膜结合试验,我们发现补骨脂素链间双加合物增强了RecA蛋白与双链DNA的结合,而呋喃侧单加合物的影响很小。因此,RecA蛋白结合和电子显微镜数据均表明,补骨脂素双加合物会导致DNA螺旋变形,很可能是通过使螺旋扭结,而单加合物对DNA螺旋结构影响很小。