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Minor groove DNA alkylation directed by major groove triplex forming oligodeoxyribonucleotides.

机译:小沟DNA烷基化由大沟三链体指导形成寡脱氧核糖核苷酸。

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摘要

We describe sequence-specific alkylation in the minor groove of double-stranded DNA by a hybridization-triggered reactive group conjugated to a triplex forming oligodeoxyribonucleotide (TFO) that binds in the major groove. The 24 nt TFOs (G/A motif) were designed to form triplexes with a homopurine tract within a 65 bp target duplex. They were conjugated to an N 5-methyl-cyclopropapyrroloindole (MCPI) residue, a structural analog of cyclopropapyrroloindole (CPI), the reactive subunit of the potent antibiotic CC-1065. These moieties react in the DNA minor groove, alkylating adenines at their N3 position. In order to optimize alkylation efficiency, linkers between the TFO and the MCPI were varied both in length and composition. Quantitative alkylation of target DNA was achieved when the dihydropyrroloindole (DPI) subunit of CC-1065 was incorporated between an octa(propylene phosphate) linker and MCPI. The required long linker traversed one strand of the target duplex from the major groove-bound TFO to deliver the reactive group to the minor groove. Alkylation was directed by relative positioning of the TFOs. Sites in the minor groove within 4-8 nt from the end of the TFO bearing the reactive group were selectively alkylated.
机译:我们描述了双链DNA的小沟中的序列特异性烷基化,通过杂交触发的反应性基团与结合在大沟中的三链体形成寡脱氧核糖核苷酸(TFO)共轭。 24 nt TFO(G / A基序)设计为在65 bp的目标双链体中形成具有高嘌呤束的三链体。它们与N 5-甲基-环丙吡咯并吲哚(MCPI)残基缀合,该残基是有效的抗生素CC-1065的反应性亚基环丙吡咯并吲哚(CPI)的结构类似物。这些部分在DNA小沟中反应,在其N3位置使腺嘌呤烷基化。为了优化烷基化效率,TFO和MCPI之间的接头长度和组成均发生变化。将CC-1065的二氢吡咯并吲哚(DPI)亚基掺入八(磷酸亚丙酯)接头和MCPI之间即可实现目标DNA的定量烷基化。所需的长连接子从主沟结合的TFO穿过目标双链体的一股链,以将反应基团传递到次沟。烷基化是由TFO的相对位置决定的。从带有反应性基团的TFO末端起4-8nt内的小凹槽中的位点被选择性烷基化。

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