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首页> 外文期刊>Nucleic acids research >4-vinyl-substituted pyrimidine nucleosides exhibit the efficient and selective formation of interstrand cross-links with RNA and duplex DNA
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4-vinyl-substituted pyrimidine nucleosides exhibit the efficient and selective formation of interstrand cross-links with RNA and duplex DNA

机译:4-乙烯基取代的嘧啶核苷表现出与RNA和双链DNA高效有效地形成链间交联的作用

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The formation of interstrand cross-links in nucleic acids can have a strong impact on biological function of nucleic acids; therefore, many cross-linking agents have been developed for biological applications. Despite numerous studies, there remains a need for cross-linking agents that exhibit both efficiency and selectivity. In this study, a 4-vinyl-substituted analog of thymidine (T-vinyl derivative) was designed as a new cross-linking agent, in which the vinyl group is oriented towards the Watson–Crick face to react with the amino group of an adenine base. The interstrand cross-link formed rapidly and selectively with a uridine on the RNA substrate at the site opposite to the T-vinyl derivative. A detailed analysis of cross-link formation while varying the flanking bases of the RNA substrates indicated that interstrand cross-link formation is preferential for the adenine base on the 5′-side of the opposing uridine. In the absence of a 5′-adenine, a uridine at the opposite position underwent cross-linking. The oligodeoxynucleotides probe incorporating the T-vinyl derivative efficiently formed interstrand cross-links in parallel-type triplex DNA with high selectivity for dA in the homopurine strand. The efficiency and selectivity of the T-vinyl derivative illustrate its potential use as a unique tool in biological and materials research.
机译:核酸中链间交联的形成可对核酸的生物学功能产生重大影响。因此,已经开发出许多用于生物应用的交联剂。尽管进行了大量研究,但仍然需要同时显示出效率和选择性的交联剂。在这项研究中,胸腺嘧啶的4-乙烯基取代类似物(T-乙烯基衍生物)被设计为一种新的交联剂,其中乙烯基朝向沃森-克里克面取向,可与腺嘌呤基。链间交联在RNA底物上与T-乙烯基衍生物相对的位置上与尿苷快速且选择性地形成。对交联形成的详细分析,同时改变了RNA底物的侧翼碱基,表明链间交联的形成优先于相对尿苷5'侧的腺嘌呤碱基。在不存在5'-腺嘌呤的情况下,在相反位置的尿苷进行了交联。掺入T-乙烯基衍生物的寡脱氧核苷酸探针有效地在平行型三链体DNA中形成链间交联,对高嘌呤链中的dA具有高选择性。 T-乙烯基衍生物的效率和选择性说明了其在生物和材料研究中作为独特工具的潜在用途。

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