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Intrastrand G-U cross-links generated by the oxidation of guanine in 5-d(GCU) and 5-r(GCU)

机译:在5-d(GCU)和5-r(GCU)中鸟嘌呤氧化产生的链内G-U交联

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摘要

It has been suggested that carbonate radical anions are biologically important because they may be produced during the inflammatory response. The carbonate radicals can selectively oxidize guanine in DNA and RNA by one-electron transfer mechanisms and the guanine radicals thus formed decay by diverse competing pathways with other free radicals or nucleophiles. Using a photochemical method to generate CO3•− radicals in vitro, we compare the distributions of products initiated by the one-electron oxidation of guanine in the trinucleotides 5’-r(GpCpU) and 5’-d(GpCpU) in aqueous buffer solutions (pH 7.4). Similar distributions of stable end-products identified by LC-MS/MS methods were found in both cases. The guanine oxidation products include the diastereomeric pair of spiroiminodihydantoin (Sp) and 2,5-diamino-4H-imidazolone (Iz). In addition, intrastrand cross-linked products involving covalent bonds between the G and U bases (G*CU*) were also found, although with different relative yields in the 2’-deoxy- and the ribotrinucleotides. The positive ion MS/MS spectra of the 5’-r(G*pCpU*) and 5’-d(G*pCpU*) products clearly indicate the presence of covalently linked G*-U* products that have a mass smaller by 2 Da than the sum of the G and U bases in both types of trinucleotides. The 5’-d(G*CU*) cross-linked product was further characterized by 1D and 2D NMR methods that confirm its cyclic structure in which the guanine C8-atom is covalently linked to the uracil N3-atom.
机译:已经提出碳酸根自由基阴离子在生物学上很重要,因为它们可能在炎症反应期间产生。碳酸盐自由基可以通过单电子转移机制选择性地氧化DNA和RNA中的鸟嘌呤,从而形成的鸟嘌呤自由基通过与其他自由基或亲核试剂的多种竞争途径而衰减。使用光化学方法在体外产生CO3 •-自由基,我们比较了鸟嘌呤单电子氧化引发的产物在三核苷酸5'-r(GpCpU)和5'-d中的分布(GpCpU)在缓冲水溶液(pH 7.4)中。在两种情况下,通过LC-MS / MS方法鉴定出的稳定终产物分布相似。鸟嘌呤的氧化产物包括非对映异构体spiroiminodihydantoin(Sp)和2,5-二氨基-4H-咪唑啉酮(Iz)。此外,虽然在2′-脱氧核苷酸和核糖三核苷酸中相对产率不同,但也发现了涉及G和U碱基之间的共价键的链内交联产物。 5'-r(G * pCpU *)和5'-d(G * pCpU *)产物的正离子MS / MS光谱清楚地表明存在共价连接的G * -U *产物,其质量较小两种类型的三核苷酸中的G和U碱基之和比2 Da大。通过1D和2D NMR方法进一步表征了5'-d(G * CU *)交联产物,证实了其环状结构,其中鸟嘌呤C8原子与尿嘧啶N3-原子共价连接。

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