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含氧化损伤碱基 5-羟胞嘧啶的寡核糖核苷酸的合成、碱基配对性质和逆转录酶的跨损伤合成。

Synthesis, base pairing properties and trans-lesion synthesis by reverse transcriptases of oligoribonucleotides containing the oxidatively damaged base 5-hydroxycytidine.

机构信息

Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.

出版信息

Nucleic Acids Res. 2011 Nov;39(21):9422-32. doi: 10.1093/nar/gkr673. Epub 2011 Aug 18.

Abstract

The synthesis of a caged RNA phosphoramidite building block containing the oxidatively damaged base 5-hydroxycytidine (5-HOrC) has been accomplished. To determine the effect of this highly mutagenic lesion on complementary base recognition and coding properties, this building block was incorporated into a 12-mer oligoribonucleotide for T(m) and CD measurements and a 31-mer template strand for primer extension experiments with HIV-, AMV- and MMLV-reverse transcriptase (RT). In UV-melting experiments, we find an unusual biphasic transition with two distinct T(m)'s when 5-HOrC is paired against a DNA or RNA complement with the base guanine in opposing position. The higher T(m) closely matches that of a C-G base pair while the lower is close to that of a C-A mismatch. In single nucleotide extension reactions, we find substantial misincorporation of dAMP and to a lesser extent dTMP, with dAMP almost equaling that of the parent dGMP in the case of HIV-RT. A working hypothesis for the biphasic melting transition does not invoke tautomeric variability of 5-HOrC but rather local structural perturbations of the base pair at low temperature induced by interactions of the 5-HO group with the phosphate backbone. The properties of this RNA damage is discussed in the context of its putative biological function.

摘要

已成功合成一种含有氧化损伤碱基 5-羟胞嘧啶(5-HOrC)的笼状 RNA 亚磷酰胺砌块。为了确定这种高度诱变损伤对互补碱基识别和编码特性的影响,将该砌块掺入 12 -mer 寡核糖核苷酸中进行 T(m) 和 CD 测量,并掺入 31-mer 模板链中进行 HIV-、AMV-和 MMLV-逆转录酶(RT)的引物延伸实验。在 UV 融解实验中,当 5-HOrC 与 DNA 或 RNA 互补物配对且碱基鸟嘌呤处于相反位置时,我们发现存在不寻常的两相转变,具有两个不同的 T(m)。较高的 T(m)与 C-G 碱基对非常匹配,而较低的 T(m)则接近 C-A 错配。在单核苷酸延伸反应中,我们发现 dAMP 和 dTMP 的掺入量很大,在 HIV-RT 的情况下,dAMP 的掺入量几乎与母体 dGMP 相等。两相熔融转变的工作假说不涉及 5-HOrC 的互变异构体可变性,而是涉及低温度下碱基对的局部结构扰动,这是由 5-HO 基团与磷酸骨架的相互作用引起的。在讨论其假定的生物学功能时,讨论了这种 RNA 损伤的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0727/3241664/7456da1a4bfa/gkr673f1.jpg

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