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Synthesis of Cross-Linked DNA Containing Oxidized Abasic Site Analogues

机译:包含氧化的碱基位点类似物的交联DNA的合成

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DNA interstrand cross-links are an important family of DNA damage that block replication and transcription. Recently, it was discovered that oxidized abasic sites react with the opposing strand of DNA to produce interstrand cross-links. Some of the cross-links between 2′-deoxyadenosine and the oxidized abasic sites, 5′-(2- phosphoryl-1,4-dioxobutane) (DOB) and the C4-hydroxylated abasic site (C4-AP), are formed reversibly. Chemical instability hinders biochemical, structural, and physicochemical characterization of these cross-linked duplexes. To overcome these limitations, we developed methods for preparing stabilized analogues of DOB and C4- AP cross-links via solid-phase oligonucleotide synthesis. Oligonucleotides of any sequence are attainable by synthesizing phosphoramidites in which the hydroxyl groups of the cross-linked product were orthogonally protected using photochemically labile and hydrazine labile groups. Selective unmasking of a single hydroxyl group precedes solid-phase synthesis of one arm of the cross-linked DNA. The method is compatible with commercially available phosphoramidites and other oligonucleotide synthesis reagents. Cross-linked duplexes containing as many as 54 nt were synthesized on solid-phase supports. Subsequent enzyme ligation of one cross-link product provided a 60 bp duplex, which is suitable for nucleotide excision repair studies.
机译:DNA链间交联是阻止复制和转录的重要DNA损伤家族。最近,发现氧化的无碱基位点与DNA的相对链反应产生链间交联。可逆地形成2'-脱氧腺苷和氧化的无碱基位点之间的一些交联键5'-(2-磷酰基-1,4-二氧代丁烷)(DOB)和C4-羟基化的无碱基位点(C4-AP) 。化学不稳定性阻碍了这些交联双链体的生化,结构和物理化学表征。为了克服这些限制,我们开发了通过固相寡核苷酸合成制备DOB和C4-AP交联的稳定类似物的方法。通过合成亚磷酰胺可获得任何序列的寡核苷酸,其中使用光化学不稳定的和肼不稳定的基团正交保护交联产物的羟基。在交联DNA的一个臂进行固相合成之前,会先对单个羟基进行选择性解掩蔽。该方法与可商购的亚磷酰胺和其他寡核苷酸合成试剂兼容。在固相载体上合成了包含多达54 nt的交联双链体。随后的一种交联产物的酶连接提供了一个60 bp的双链体,适用于核苷酸切除修复研究。

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