Rhee Y, Valentine M R, Termini J
Department of Molecular Biochemistry, Beckman Research Institute of the City of Hope, Duarte, CA 91010, USA.
Nucleic Acids Res. 1995 Aug 25;23(16):3275-82. doi: 10.1093/nar/23.16.3275.
Oxidative base damage in DNA and metabolic defects in the recognition and removal of such damage play important roles in mutagenesis and human disease. The extent to which cellular RNA is a substrate for oxidative damage and the possible biological consequences of RNA base oxidation, however, remain largely unexplored. Since oxidatively modified RNA may contribute to the high mutability of retroviral genomic DNA, we have been interested in developing methods for the sequence specific detection of such damage. We show here that a primer extension assay using AMV reverse transcriptase (RT) can be used to reveal oxidatively damaged sites in RNA. This finding extends the currently known range of RNA modifications detectable with AMV reverse transcriptase. Analogous assays using DNA polymerases to detect base damage in DNA substrates appear to be restricted to lesions at thymine. Oxidative base damage in the absence of any detectable chain breaks was produced by dye photosensitization of RNA. Six out of 20 dyes examined were capable of producing RT detectable lesions. RT stops were seen predominantly at purines, although many pyrimidine sites were also detected. Dye specific photofootprints revealed by RT analysis suggests differential dye binding to the RNA substrate. Some of the photoreactive dyes described here may have potential utility in RNA structural analysis, particularly in the identification of stem-loop regions in complex RNAs.
DNA中的氧化性碱基损伤以及识别和清除此类损伤过程中的代谢缺陷在诱变和人类疾病中起着重要作用。然而,细胞RNA作为氧化损伤底物的程度以及RNA碱基氧化可能产生的生物学后果在很大程度上仍未得到探索。由于氧化修饰的RNA可能导致逆转录病毒基因组DNA的高变异性,我们一直致力于开发针对此类损伤进行序列特异性检测的方法。我们在此表明,使用禽成髓细胞瘤病毒逆转录酶(RT)的引物延伸试验可用于揭示RNA中的氧化损伤位点。这一发现扩展了目前已知的可用禽成髓细胞瘤病毒逆转录酶检测到的RNA修饰范围。使用DNA聚合酶检测DNA底物中碱基损伤的类似试验似乎仅限于胸腺嘧啶处的损伤。通过RNA的染料光敏化产生了在没有任何可检测链断裂情况下的氧化性碱基损伤。在所检测的20种染料中,有6种能够产生可被逆转录酶检测到的损伤。逆转录酶分析显示的逆转录酶终止主要出现在嘌呤处,尽管也检测到了许多嘧啶位点。逆转录酶分析揭示的染料特异性光足迹表明染料与RNA底物的结合存在差异。本文所述的一些光反应性染料可能在RNA结构分析中具有潜在用途,特别是在识别复杂RNA中的茎环区域方面。