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Linkers designed to intercalate the double helix greatly facilitate DNA alkylation by triplex-forming oligonucleotides carrying a cyclopropapyrroloindole reactive moiety.

机译:设计用于插入双螺旋的接头通过带有环丙吡咯并吲哚反应性部分的三链体形成寡核苷酸极大地促进了DNA烷基化。

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摘要

Triplex-forming oligonucleotides (TFOs) bind sequence-specifically in the major groove of double-stranded DNA. Cyclopropapyrroloindole (CPI), the electrophilic moiety that comprises the reactive subunit of the antibiotic CC-1065, gives hybridization-triggered alkylation at the N-3 position of adenines when bound in the minor groove of double-stranded DNA. In order to attain TFO-directed targeting of CPI, we designed and tested linkers to 'thread' DNA from the major groove-bound TFO to the minor groove binding site of CPI. Placement of an aromatic ring in the linker significantly enhanced the site-directed reaction, possibly due to a 'threading' mechanism where the aromatic ring is intercalated. All of the linkers containing aromatic rings provided efficient alkylation of the duplex target. The linker containing an acridine ring system, the strongest intercalator in the series, gave a small but clearly detectable amount of non-TFO-specific alkylation. An equivalent-length linker without an aromatic ring was very inefficient in DNA target alkylation.
机译:三链体形成寡核苷酸(TFO)在双链DNA的主沟中特异性结合。环丙吡咯并吲哚(CPI)是构成抗生素CC-1065的反应性亚基的亲电子部分,当结合在双链DNA的小沟中时,会在腺嘌呤的N-3位产生杂交触发的烷基化反应。为了实现针对TFO的CPI靶向,我们设计并测试了将DNA从主要的沟纹TFO“连接”到CPI的次要沟纹结合位点的接头。芳环在接头中的位置显着增强了定点反应,这可能是由于芳环插入其中的“穿线”机理所致。所有含有芳环的接头都提供了双链靶的有效烷基化。含有a啶环系统(该系列中最强的嵌入剂)的连接基产生了少量但可明显检测到的非TFO特异性烷基化反应。没有芳香环的等长连接子在DNA靶烷基化中效率很低。

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