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自由基诱导的嘌呤损伤形成取决于DNA螺旋拓扑结构。

Radical-induced purine lesion formation is dependent on DNA helical topology.

作者信息

Terzidis Michael A, Prisecaru Andreea, Molphy Zara, Barron Niall, Randazzo Antonio, Dumont Elise, Krokidis Marios G, Kellett Andrew, Chatgilialoglu Chryssostomos

机构信息

a ISOF , Consiglio Nazionale delle Ricerche , Bologna , Italy.

b School of Chemical Sciences and National Institute for Cellular Biotechnology , Dublin City University , Glasnevin , Dublin , Ireland.

出版信息

Free Radic Res. 2016 Nov;50(sup1):S91-S101. doi: 10.1080/10715762.2016.1244820.

DOI:10.1080/10715762.2016.1244820
PMID:27733084
Abstract

Herein we report the quantification of purine lesions arising from gamma-radiation sourced hydroxyl radicals (HO) on tertiary dsDNA helical forms of supercoiled (SC), open circular (OC), and linear (L) conformation, along with single-stranded folded and non-folded sequences of guanine-rich DNA in selected G-quadruplex structures. We identify that DNA helical topology and folding plays major, and unexpected, roles in the formation of 8-oxo-7,8-dihydro-2'-deoxyguanosine (8-oxo-dG) and 8-oxo-7,8-dihydro-2'-deoxyadenosine (8-oxo-dA), along with tandem-type purine lesions 5',8-cyclo-2'-deoxyguanosine (5',8-cdG) and 5',8-cyclo-2'-deoxyadenosine (5',8-cdA). SC, OC, and L dsDNA conformers together with folded and non-folded G-quadruplexes d[TGGGGT] (TG4T), d[AGGG(TTAGGG)] (Tel22), and the mutated tel24 d[TTGGG(TTAGGG)A] (mutTel24) were exposed to HO radicals and purine lesions were then quantified via stable isotope dilution LC-MS/MS analysis. Purine oxidation in dsDNA follows L > OC ≫ SC indicating greater damage towards the extended B-DNA topology. Conversely, G-quadruplex sequences were significantly more resistant toward purine oxidation in their unfolded states as compared with G-tetrad folded topologies; this effect is confirmed upon comparative analysis of Tel22 (∼50% solution folded) and mutTel24 (∼90% solution folded). In an effort to identify the accessibly of hydroxyl radicals to quadruplex purine nucleobases, G-quadruplex solvent cavities were then modeled at 1.33 Å with evidence suggesting that folded G-tetrads may act as potential oxidant traps to protect against chromosomal DNA damage.

摘要

在此,我们报告了在超螺旋(SC)、开环(OC)和线性(L)构象的三级双链DNA螺旋形式上,以及选定的G-四链体结构中富含鸟嘌呤的DNA的单链折叠和非折叠序列上,由γ辐射源产生的羟基自由基(HO)引发的嘌呤损伤的定量分析。我们发现,DNA螺旋拓扑结构和折叠在8-氧代-7,8-二氢-2'-脱氧鸟苷(8-氧代-dG)和8-氧代-7,8-二氢-2'-脱氧腺苷(8-氧代-dA)的形成中起着主要且意想不到的作用,同时还包括串联型嘌呤损伤5',8-环-2'-脱氧鸟苷(5',8-cdG)和5',8-环-2'-脱氧腺苷(5',8-cdA)。将SC、OC和L双链DNA构象异构体以及折叠和非折叠的G-四链体d[TGGGGT](TG4T)、d[AGGG(TTAGGG)](Tel22)和突变的tel24 d[TTGGG(TTAGGG)A](mutTel24)暴露于HO自由基,然后通过稳定同位素稀释液相色谱-串联质谱分析对嘌呤损伤进行定量。双链DNA中的嘌呤氧化遵循L>OC≫SC,表明对扩展的B-DNA拓扑结构的损伤更大。相反,与G-四联体折叠拓扑结构相比,G-四链体序列在其未折叠状态下对嘌呤氧化的抗性明显更强;通过对Tel22(约50%溶液折叠)和mutTel24(约90%溶液折叠)的比较分析证实了这一效应。为了确定羟基自由基对四链体嘌呤核碱基的可及性,随后以1.33Å对G-四链体溶剂腔进行建模,有证据表明折叠的G-四联体可能作为潜在的氧化剂陷阱,以防止染色体DNA损伤。

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