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用全取代或部分2'-脱氧-5-羟基尿苷取代来探测端粒样G4结构。

Probing telomeric-like G4 structures with full or partial 2'-deoxy-5-hydroxyuridine substitutions.

作者信息

Szeltner Zoltán, Ferenc Györgyi, Juhász Tünde, Kupihár Zoltán, Váradi Zoltán, Szüts Dávid, Kovács Lajos

机构信息

Institute of Enzymology, Research Centre for Natural Sciences, Magyar Tudósok Körútja 2, H-1117, Budapest, Hungary.

Nucleic Acid Synthesis Laboratory, Biological Research Centre, Eötvös Loránd Research Network, Temesvári Krt. 62, H-6726, Szeged, Hungary.

出版信息

Biochimie. 2023 Nov;214(Pt A):33-44. doi: 10.1016/j.biochi.2023.01.009. Epub 2023 Jan 24.

Abstract

Guanine quadruplexes (G4s) are stable four-stranded secondary DNA structures held together by noncanonical G-G base tetrads. We synthesised the nucleoside analogue 2'-deoxy-5-hydroxyuridine (H) and inserted its phosphoramidite into telomeric repeat-type model oligonucleotides. Full and partial substitutions were made, replacing all guanines in all the three tetrads of a three-tier G4 structure, or only in the putative upper, central, or lower tetrads. We characterised these modified structures using CD, UV absorbance spectroscopy, native gel studies, and a capture oligo-based G4 disruption kinetic assay. The strand separation activity of BLM helicase on these substituted structures was also investigated. Two of the partially H-substituted constructs adopted G4-like structures, but displayed lower thermal stabilities compared to unsubstituted G4. The construct modified in its central tetrad remained mostly denatured, but the possibility of a special structure for the fully replaced variant remained open. H substitutions did not interfere with the G4-resolving activity of BLM helicase, but its efficiency was highly influenced by construct topology and even more by the G4 ligand PhenDC3. Our results suggest that the H modification can be incorporated into G quadruplexes, but only at certain positions to maintain G4 stability. The destabilizing effect observed for 2'-deoxy-5-hydroxyuridine indicates that the cytosine deamination product 5-hydroxyuracil and its nucleoside counterpart in RNA (5-hydroxyuridine), might also be destabilizing in cellular DNA and RNA quadruplexes. The kinetic assay employed in this study can be generally employed for a fast comparison of the stabilities of various G4s either in their free or ligand-bound states.

摘要

鸟嘌呤四链体(G4s)是由非经典G-G碱基四联形成的稳定的四链二级DNA结构。我们合成了核苷类似物2'-脱氧-5-羟基尿苷(H),并将其亚磷酰胺插入端粒重复型模型寡核苷酸中。进行了完全和部分取代,取代了三层G4结构所有三个四联体中的所有鸟嘌呤,或仅取代推定的上层、中层或下层四联体中的鸟嘌呤。我们使用圆二色性(CD)、紫外吸收光谱、天然凝胶研究以及基于捕获寡核苷酸的G4破坏动力学分析对这些修饰结构进行了表征。还研究了BLM解旋酶对这些取代结构的链分离活性。两个部分被H取代的构建体采用了类似G4的结构,但与未取代的G4相比,热稳定性较低。在其中心四联体中修饰的构建体大多保持变性状态,但完全取代变体存在特殊结构的可能性仍然存在。H取代不干扰BLM解旋酶的G4解旋活性,但其效率受到构建体拓扑结构的高度影响,甚至更受G4配体PhenDC3的影响。我们的结果表明,H修饰可以掺入G四链体中,但仅在某些位置以维持G4稳定性。观察到的2'-脱氧-5-羟基尿苷的去稳定作用表明,胞嘧啶脱氨产物5-羟基尿嘧啶及其在RNA中的核苷对应物(5-羟基尿苷),在细胞DNA和RNA四链体中也可能具有去稳定作用。本研究中采用的动力学分析通常可用于快速比较各种G4在其游离或与配体结合状态下的稳定性。

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