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A rhodium(Ⅲ) complex for high-affinity DNA base-pair mismatch recognition

机译:用于高亲和力DNA碱基对错配识别的铑(Ⅲ)配合物

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A rhodium(Ⅲ) complex, rac-[Rh(bpy)_2phzi]~(3+) (bpy, 2,2′-bipyri-dine; phzi, benzo[a]phenazine-5,6-quinone diimine) has been designed as a sterically demanding intercalator targeted to destabilized mismatched sites in double-helical DNA. The complex is readily synthesized by condensation of the phenazine quinone with the corresponding diammine complex. Upon photo-activation, the complex promotes direct strand scission at single-base mismatch sites within the DNA duplex. As with the parent mismatch-specific reagent, [Rh(bpy)_2(chrysi)]~(3+) [chrysene-5,6-quinone diimine (chrysi)], mismatch selectivity depends on the helix destabilization associated with mispairing. Unlike the parent chrysi complex, the phzi analogue binds and cleaves with high affinity and efficiency. The specific binding constants for CA, CC, and CT mismatches within a 31-mer oligonucleotide duplex are 0.3, 1, and 6 x 10~7 M~(-1), respectively; site-specific photodeavage is evident at nanomolar concentrations. Moreover, the specificity, defined as the ratio in binding affinities for mlspaired vs. well paired sites, is maintained. The increase in affinity is attributed to greater stability in the mismatched site associated with stacking by the heterocyclic aromatic ligand. The high-affinity complex is also applied in the differential cleavage of DNA obtained from cell lines deficient in mismatch repair vs. those proficient in mismatch repair. Agreement is found between photodeavage by the mismatch-specific probes and deficiency in mismatch repair. This mismatch-specific targeting, therefore, offers a potential strategy for new chemotherapeutic design.
机译:铑(Ⅲ)配合物rac- [Rh(bpy)_2phzi]〜(3+)(bpy,2,2'-bipyri-dine; phzi,苯并[a]吩嗪-5,6-醌二亚胺)设计为对双螺旋DNA中不稳定的错配位点有空间要求的嵌入剂。通过吩嗪醌与相应的二胺配合物的缩合可以容易地合成该配合物。光激活后,复合物促进DNA双链体中单碱基错配位点的直接链断裂。与母体错配特异性试剂[Rh(bpy)_2(chrysi)]〜(3+)[chrysene-5,6-quinone diimine(chrysi)]一样,错配选择性取决于与错配相关的螺旋去稳定作用。不同于亲代的chrysi复合物,phzi类似物以高亲和力和效率结合并裂解。在31-mer寡核苷酸双链体中CA,CC和CT错配的特异性结合常数分别为0.3、1和6 x 10〜7 M〜(-1)。在纳摩尔浓度下,特定位点的光降解是明显的。而且,保持了特异性,其定义为配对配对位与配对配对位点的结合亲和力之比。亲和力的增加归因于与杂环芳族配体的堆积相关的错配位点的更大稳定性。高亲和力复合物也可用于从错配修复缺陷的细胞系与熟练进行错配修复的细胞系获得的DNA的差异切割中。在失配特异性探针的光解与失配修复的缺陷之间找到了一致。因此,这种错配特异性靶向为新的化疗设计提供了潜在的策略。

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