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Sequence-specific DNA alkylation and transcriptional inhibition by long-chain hairpin pyrrole-imidazole polyamide-chlorambucil conjugates targeting CAG/CTG trinucleotide repeats.

机译:靶向CAG / CTG三核苷酸重复序列的长链发夹吡咯-咪唑聚酰胺-苯丁酸氮芥偶联物的序列特异性DNA烷基化和转录抑制。

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摘要

Introducing novel building blocks to solid-phase peptide synthesis, we readily synthesized long-chain hairpin pyrrole-imidazole (PI) polyamide-chlorambucil conjugates 3 and 4 via the introduction of an amino group into a GABA (γ-turn) contained in 3, to target CAG/CTG repeat sequences, which are associated with various hereditary disorders. A high-resolution denaturing polyacrylamide sequencing gel revealed sequence-specific alkylation both strands at the N3 of adenines or guanines in CAG/CTG repeats by conjugates 3 and 4, with 11bp recognition. In vitro transcription assays using conjugate 4 revealed that specific alkylation inhibited the progression of RNA polymerase at the alkylating sites. Chiral substitution of the γ-turn with an amino group resulted in higher binding affinity observed in SPR assays. These assays suggest that conjugates 4 with 11bp recognition has the potential to cause specific DNA damage and transcriptional inhibition at the alkylating sites.
机译:在固相肽合成中引入新的组成部分,我们通过将氨基引入3中所含的GABA(γ-转角)中,很容易地合成了长链发夹式吡咯-咪唑(PI)聚酰胺-苯丁酸氮芥共轭物3和4,靶向与各种遗传性疾病相关的CAG / CTG重复序列。高分辨率变性聚丙烯酰胺测序凝胶显示,CAG / CTG重复序列中的CAG / CTG重复序列中,腺嘌呤或鸟嘌呤N3的两条链均具有序列特异性烷基化,识别度为11bp。使用缀合物4的体外转录分析表明,特异性烷基化抑制了RNA聚合酶在烷基化位点的进程。用氨基手性替换γ-转角会导致在SPR分析中观察到更高的结合亲和力。这些测定表明具有11bp识别的缀合物4具有在烷基化位点引起特异性DNA损伤和转录抑制的潜力。

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