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Pervasive generation of oppositely oriented spacers during CRISPR adaptation

机译:在CRISPR适应过程中普遍生成了相反方向的间隔子

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摘要

During the process of prokaryotic CRISPR adaptation, a copy of a segment of foreign deoxyribonucleic acid referred to as protospacer is added to the CRISPR cassette and becomes a spacer. When a protospacer contains a neighboring target interference motif, the specific small CRISPR ribonucleic acid (crRNA) transcribed from expanded CRISPR cassette can protect a prokaryotic cell from virus infection or plasmid transformation and conjugation. We show that in Escherichia coli, a vast majority of plasmid protospacers generate spacers integrated in CRISPR cassette in two opposing orientations, leading to frequent appearance of complementary spacer pairs in a population of cells that underwent CRISPR adaptation. When a protospacer contains a spacer acquisition motif AAG, spacer orientation that generates functional protective crRNA is strongly preferred. All other protospacers give rise to spacers oriented in both ways at comparable frequencies. This phenomenon increases the repertoire of available spacers and should make it more likely that a protective crRNA is formed as a result of CRISPR adaptation.
机译:在原核CRISPR适应过程中,将称为protospacer的外源脱氧核糖核酸片段的副本添加到CRISPR盒中并成为间隔子。当一个原间隔子包含一个邻近的目标干扰基序时,从扩展的CRISPR盒转录的特定的小CRISPR核糖核酸(crRNA)可以保护原核细胞免受病毒感染或质粒转化和缀合。我们显示在大肠杆菌中,绝大多数质粒原型间隔子会以两个相反的方向生成整合在CRISPR盒中的间隔子,从而导致经历了CRISPR适应的细胞群中互补间隔子对的频繁出现。当原间隔物包含间隔子获取基序AAG时,强烈建议使用产生功能性保护性crRNA的间隔子方向。所有其他原始间隔器都会产生以可比较的频率以两种方式定向的间隔器。这种现象增加了可用间隔区的库,并且应该使由于CRISPR适应而形成保护性crRNA的可能性更高。

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