Penno Christophe, Kumari Romika, Baranov Pavel V, van Sinderen Douwe, Atkins John F
School of Biochemistry, University College Cork, Cork, Ireland.
School of Microbiology, University College Cork, Cork, Ireland.
Nucleic Acids Res. 2017 Sep 29;45(17):10143-10155. doi: 10.1093/nar/gkx689.
RNA dependent DNA-polymerases, reverse transcriptases, are key enzymes for retroviruses and retroelements. Their fidelity, including indel generation, is significant for their use as reagents including for deep sequencing. Here, we report that certain RNA template structures and G-rich sequences, ahead of diverse reverse transcriptases can be strong stimulators for slippage at slippage-prone template motif sequence 3' of such 'slippage-stimulatory' structures. Where slippage is stimulated, the resulting products have one or more additional base(s) compared to the corresponding template motif. Such structures also inhibit slippage-mediated base omission which can be more frequent in the absence of a relevant stem-loop. Slippage directionality, base insertion and omission, is sensitive to the relative concentration ratio of dNTPs specified by the RNA template slippage-prone sequence and its 5' adjacent base. The retrotransposon-derived enzyme TGIRT exhibits more slippage in vitro than the retroviral enzymes tested including that from HIV. Structure-mediated slippage may be exhibited by other polymerases and enrich gene expression. A cassette from Drosophila retrotransposon Dme1_chrX_2630566, a candidate for utilizing slippage for its GagPol synthesis, exhibits strong slippage in vitro. Given the widespread occurrence and importance of retrotransposons, systematic studies to reveal the extent of their functional utilization of RT slippage are merited.
RNA依赖的DNA聚合酶,即逆转录酶,是逆转录病毒和逆转录元件的关键酶。它们的保真度,包括插入缺失的产生,对于其作为试剂(包括用于深度测序)的用途而言至关重要。在此,我们报告,在多种逆转录酶之前的某些RNA模板结构和富含G的序列,可以成为此类“滑动刺激”结构3'端易发生滑动的模板基序序列处滑动的强刺激物。在滑动受到刺激的地方,与相应的模板基序相比,产生的产物具有一个或多个额外的碱基。此类结构还抑制滑动介导的碱基缺失,在没有相关茎环的情况下,这种缺失可能更频繁。滑动方向性、碱基插入和缺失,对RNA模板易滑动序列及其5'相邻碱基指定的dNTP相对浓度比敏感。源自逆转座子的酶TGIRT在体外比包括来自HIV的逆转录病毒酶表现出更多的滑动。结构介导的滑动可能由其他聚合酶表现出来并丰富基因表达。来自果蝇逆转座子Dme1_chrX_2630566的一个盒式结构,作为其GagPol合成利用滑动的候选者,在体外表现出强烈的滑动。鉴于逆转座子的广泛存在和重要性,进行系统研究以揭示它们对RT滑动功能利用的程度是值得的。