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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Efficient Thymidine-Selective DNA Interstrand Photo-activated Crosslinking by the 6-Thioguanine Connected via an Ethylene-Linker to the 2′-Deoxyribose Unit
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Efficient Thymidine-Selective DNA Interstrand Photo-activated Crosslinking by the 6-Thioguanine Connected via an Ethylene-Linker to the 2′-Deoxyribose Unit

机译:高效的胸腺嘧啶脱氧核糖核酸间链经6-硫鸟嘌呤光活化交联的经由乙烯-连接基连接到2'-脱氧核糖单元

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Cross-linking is a widely-used technology in the studies of DNA, RNA and their complexes with proteins. Intrinsically active alkylating moieties and photo-activated agents are chemically or enzymatically incorporated into nucleic acids. Thionucleobases resemble the corresponding natural bases, and form cross-links by UVA irradiation. They form cross-links only with a site in close contact, thereby allowing identification of the contacts within the nucleic acids and/or between the nucleic acids and proteins in complex nucleoprotein assemblies. On the other hand, the thionucleobase forms a cross-link less efficiently for the reaction with the opposite natural base in the DNA duplex. In this study, 6-thioguanine was connected to 2′-deoxyribose through an ethylene linker at the 1′-position (Et-thioG). The linker was expected to bring the 6-thio group close to the nucleobase in the opposite strand. In a duplex in which the 2′-deoxy-6-thioguanosine (6-thio-dG) did not form a crosslink, Et-thioG efficiently formed crosslink with a high selectivity for T by UVA irradiation, but with a much lower efficiency for dA, dG, dC, 5-methyl-dC or dU. Interestingly, the yield of the photo-crosslinked product with dT was effectively improved in the presence of dithiothreitol or sodium hydrosulfide (NaSH) at a low UVA irradiation dose. The efficient and selective cross-link formation at a low UVA dose may be beneficial for the biological application of Et-thioG.
机译:交联是研究DNA,RNA及其与蛋白质的复合物时广泛使用的技术。本质上活性的烷基化部分和光活化剂被化学或酶促地掺入核酸。硫核碱基类似于相应的天然碱基,并通过UVA辐射形成交联。它们仅与紧密接触的位点形成交联,从而允许鉴定核酸内和/或复杂核蛋白装配体中核酸与蛋白之间的接触。另一方面,硫代核酸碱基与DNA双链体中相对的天然碱基反应形成交联的效率较低。在这项研究中,6-硫鸟嘌呤通过1'-位的乙烯连接基(Et-thioG)与2'-脱氧核糖连接。预期该接头可使6-硫基团靠近相反链中的核碱基。在2'-脱氧-6-硫鸟嘌呤(6-thio-dG)没有形成交联键的双链体中,Et-thioG通过UVA辐射高效地形成了对T具有高选择性的交联键,但是其对C的效率低得多。 dA,dG,dC,5-甲基-dC或dU。有趣的是,在低硫紫外线照射剂量下,在二硫苏糖醇或硫化氢钠(NaSH)的存在下,有效地提高了dT与光交联产物的产率。在低UVA剂量下有效且选择性的交联形成可能对Et-thioG的生物学应用有益。

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