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Catalytic analysis of APOBEC3G involving real-time NMR spectroscopy reveals nucleic acid determinants for deamination.

机译:涉及实时NMR光谱的APOBEC3G的催化分析显示了脱氨基的核酸决定因素。

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摘要

APOBEC3G (A3G) is a single-stranded DNA-specific cytidine deaminase that preferentially converts cytidine to uridine at the third position of triplet cytosine (CCC) hotspots. A3G restricts the infectivity of viruses, such as HIV-1, by targeting CCC hotspots scattered through minus DNA strands, reverse-transcribed from genomic RNA. Previously, we developed a real-time NMR method and elucidated the origin of the 3'→5' polarity of deamination of DNA by the C-terminal domain of A3G (CD2), which is a phenomenon by which a hotspot located closer to the 5'-end is deaminated more effectively than one less close to the 5'-end, through quantitative analysis involving nonspecific binding to and sliding along DNA. In the present study we applied the real-time NMR method to analyze the catalytic activity of CD2 toward DNA oligonucleotides containing a nucleotide analog at a single or multiple positions. Analyses revealed the importance of the sugar and base moieties throughout the consecutive 5 nucleotides, the CCC hotspot being positioned at the center. It was also shown that the sugar or base moieties of the nucleotides outside this 5 nucleotide recognition sequence are also relevant as to CD2's activity. Analyses involving DNA oligonucleotides having two CCC hotspots linked by a long sequence of either deoxyribonucleotides, ribonucleotides or abasic deoxyribonucleotides suggested that the phosphate backbone is required for CD2 to slide along the DNA strand and to exert the 3'→5' polarity. Examination of the effects of different salt concentrations on the 3'→5' polarity indicated that the higher the salt concentration, the less prominent the 3'→5' polarity. This is most likely the result of alleviation of sliding due to a decrease in the affinity of CD2 with the phosphate backbone at high salt concentrations. We also investigated the reactivity of substrates containing 5-methylcytidine (5mC) or 5-hydroxymethylcytidine, and found that A3G exhibited low activity toward 5mC.
机译:APOBEC3G(A3G)是一种单链DNA特异性胞苷脱氨酶,可在三重胞嘧啶(CCC)热点的第三个位置优先将胞苷转换为尿苷。 A3G通过靶向从基因组RNA反转录的通过负DNA链分散的CCC热点来限制病毒(如HIV-1)的感染性。以前,我们开发了一种实时NMR方法,并通过A3G(CD2)的C末端结构域阐明了DNA脱氨的3'→5'极性的起源,这种现象是热点位于靠近通过涉及与DNA的非特异性结合和沿着DNA滑动的定量分析,与5'末端相比,5'末端的脱氨基效率更高。在本研究中,我们应用了实时NMR方法来分析CD2对包含一个或多个位置核苷酸类似物的DNA寡核苷酸的催化活性。分析揭示了糖和碱基部分在连续的5个核苷酸中的重要性,CCC热点位于中心。还显示出在这5个核苷酸识别序列之外的核苷酸的糖或碱基部分也与CD2的活性有关。涉及具有两个CCC热点的DNA寡核苷酸的分析,这些热点通过长序列的脱氧核糖核苷酸,核糖核苷酸或脱碱基的脱氧核糖核苷酸连接在一起,这表明CD2沿着DNA链滑动并发挥3'→5'极性需要磷酸盐骨架。检查不同盐浓度对3'→5'极性的影响表明,盐浓度越高,3'→5'极性越不突出。这很可能是由于在高盐浓度下CD2与磷酸盐骨架的亲和力降低而减轻了滑动的结果。我们还研究了包含5-甲基胞嘧啶(5mC)或5-羟甲基胞嘧啶的底物的反应性,发现A3G对5mC的活性较低。

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