Sehlstedt U, Kim S K, Carter P, Goodisman J, Vollano J F, Nordén B, Dabrowiak J C
Department of Physical Chemistry, Chalmers University of Technology, Gothenburg, Sweden.
Biochemistry. 1994 Jan 18;33(2):417-26. doi: 10.1021/bi00168a005.
Utilizing linear dichroism (LD), circular dichroism (CD), and fluorescence energy transfer, the binding geometries of a series of Co(3+)-porphyrins and their free ligands were examined. The compounds studied were Co-meso-tetrakis(N-methylpyridinium-4-yl)porphyrin (CoTMPyP) and its free ligand (H2-TMPyP), Co-meso-tetrakis(N-n-butylpyridinium-4-yl)porphyrin (CoTBPyP) and its free ligand (H2TBPyP), and Co-meso-tetrakis(N-n-octylpyridinium-4-yl)porphyrin (CoTOPyP). The two non-metalloporphyrins exhibit negative LD, having angles of roughly 75 degrees relative to the DNA helix axis. They also display negative CD and a significant contact energy transfer from the DNA bases. On the other hand, the three metalloporphyrins display orientation angles of roughly 45 degrees between the porphyrin plane and the helix axis of DNA. Furthermore, they exhibit positive CD and no contact energy transfer from DNA bases. These observations show that the metalloporphyrins are not intercalated whereas non-metalloporphyrins having four freely rotating meso-aryl groups intercalate between the base pairs of DNA. In the presence of KHSO5, the cobalt porphyrins cleave closed circular PM2 DNA in a single strand manner, i.e., a single activation event on the porphyrin leads to a break in one of the DNA strands. A kinetic analysis of the cleavage data revealed that cleavage rates are in the order CoTMPyP > CoTBPyP > CoTOPyP with the difference being due to different DNA affinities rather than differences in cleavage rate-constants. Based on these and earlier observations, the metalloporphyrins appear bound to a partially melted region of DNA.
利用线性二色性(LD)、圆二色性(CD)和荧光能量转移,研究了一系列钴(III)-卟啉及其游离配体的结合几何结构。所研究的化合物有钴-中位-四(N-甲基吡啶鎓-4-基)卟啉(CoTMPyP)及其游离配体(H2-TMPyP)、钴-中位-四(N-正丁基吡啶鎓-4-基)卟啉(CoTBPyP)及其游离配体(H2TBPyP)以及钴-中位-四(N-正辛基吡啶鎓-4-基)卟啉(CoTOPyP)。两种非金属卟啉呈现负的LD,相对于DNA螺旋轴的角度约为75度。它们还表现出负的CD以及来自DNA碱基的显著接触能量转移。另一方面,三种金属卟啉在卟啉平面和DNA螺旋轴之间呈现约45度的取向角。此外,它们表现出正的CD且没有来自DNA碱基的接触能量转移。这些观察结果表明金属卟啉没有插入,而具有四个可自由旋转的中位芳基的非金属卟啉插入到DNA的碱基对之间。在KHSO5存在下,钴卟啉以单链方式切割闭环PM2 DNA,即卟啉上的单个活化事件导致DNA的一条链断裂。对切割数据的动力学分析表明,切割速率顺序为CoTMPyP > CoTBPyP > CoTOPyP,差异是由于不同的DNA亲和力而非切割速率常数的差异。基于这些以及早期的观察结果,金属卟啉似乎结合在DNA的部分解链区域。