首页> 外文期刊>The Journal of biological chemistry >Single-stranded DNA Scanning and Deamination by APOBEC3G Cytidine Deaminase at Single Molecule Resolution
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Single-stranded DNA Scanning and Deamination by APOBEC3G Cytidine Deaminase at Single Molecule Resolution

机译:单分子分辨率在单分子分辨率下通过apobec3g cyididine脱氨酶脱胺

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APOBEC3G (Apo3G) is a single-stranded (ss)DNA cytosine deaminase that eliminates HIV-1 infectivity by converting C → U in numerous small target motifs on the minus viral cDNA. Apo3G deaminates linear ssDNA in vitro with pronounced spatial asymmetry favoring the 3′ → 5′ direction. A similar polarity observed in vivo is believed responsible for initiating localized C → T mutational gradients that inactivate the virus. When compared with double-stranded (ds)DNA scanning enzymes, e.g. DNA glycosylases that excise rare aberrant bases, there is a paucity of mechanistic studies on ssDNA scanning enzymes. Here, we investigate ssDNA scanning and motif-targeting mechanisms for Apo3G using single molecule F?rster resonance energy transfer. We address the specific issue of deamination asymmetry within the general context of ssDNA scanning mechanisms and show that Apo3G scanning trajectories, ssDNA contraction, and deamination efficiencies depend on motif sequence, location, and ionic strength. Notably, we observe the presence of bidirectional quasi-localized scanning of Apo3G occurring proximal to a 5′ hot motif, a motif-dependent DNA contraction greatest for 5′ hot > 3′ hot > 5′ cold motifs, and diminished mobility at low salt. We discuss the single molecule F?rster resonance energy transfer data in terms of a model in which deamination polarity occurs as a consequence of Apo3G binding to ssDNA in two orientations, one that is catalytically favorable, with the other disfavorable.
机译:apobec3g(apo3g)是一种单链(ss)DNA细胞酶脱氨酶,其通过在减去病毒cDNA上的许多小靶基序中转化C→U来消除HIV-1感染性。 Apo3G在体外脱氨基含有线性SSDNA,具有优于3'→5'方向的明显的空间不对称性。在体内观察到的类似极性被认为是启动局部的局部C→T的突变梯度,该偏移灭活病毒。与双链(DS)DNA扫描酶相比,例如相比。切除稀有异常碱基的DNA糖基酶,对SSDNA扫描酶有一种机械研究。在这里,我们使用单分子Fα探测APO3G的SSDNA扫描和基序靶向机制。罗斯特共振能量转移。我们在SSDNA扫描机制的一般语境中解决了脱胺不对称的具体问题,并显示APO3G扫描轨迹,SsDNA收缩和脱氨效率取决于基序序列,位置和离子强度。值得注意的是,我们观察到双向准局部扫描的APO3G发生近端的APO3G,对于5'热门的基序,对于5'热> 3'热> 5'冷图案最大的主题依赖性DNA收缩,并在低盐下减少迁移率。我们讨论单个分子f?rste共振能量转移数据,其中模型,其中由于Apo3g以两种方向结合到SsDNA的后果而发生脱氨极性,其催化有利,其它不适当。

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