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Detection and characterization of spacer integration intermediates in type I-E CRISPR-Cas system

机译:I-E CRISPR-Cas系统中间隔整合中间体的检测和表征

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The adaptation against foreign nucleic acids by the CRISPR-Cas system (Clustered Regularly Interspaced Short Palindromic Repeats and CRISPR-associated proteins) depends on the insertion of foreign nucleic acid-derived sequences into the CRISPR array as novel spacers by still unknown mechanism. We identified and characterized in Escherichia coli intermediate states of spacer integration and mapped the integration site at the chromosomal CRISPR array in vivo. The results show that the insertion of new spacers occurs by site-specific nicking at both strands of the leader proximal repeat in a staggered way and is accompanied by joining of the resulting 5 '-ends of the repeat strands with the 3 '-ends of the incoming spacer. This concerted cleavage-ligation reaction depends on the metal-binding center of Cas1 protein and requires the presence of Cas2. By acquisition assays using plasmid-located CRISPR array with mutated repeat sequences, we demonstrate that the primary sequence of the first repeat is crucial for cleavage of the CRISPR array and the ligation of new spacer DNA
机译:CRISPR-Cas系统(聚簇有规律间隔的短回文重复序列和CRISPR相关蛋白)对外来核酸的适应性取决于通过未知机制将外源核酸衍生序列作为新的间隔子插入CRISPR阵列。我们鉴定并表征了间隔区整合的大肠杆菌中间状态,并将整合位点定位在体内染色体CRISPR阵列上。结果表明,新间隔区的插入是通过在前导近端重复序列的两条链上以错位的方式在位点特异性切口而发生的,并伴随着重复序列链的5'-末端与3'-末端的连接。进入的垫片。这种协调的切割-连接反应取决于Cas1蛋白质的金属结合中心,并需要Cas2的存在。通过使用具有突变的重复序列的位于质粒的CRISPR阵列的采集分析,我们证明了第一个重复序列的主要序列对于CRISPR阵列的裂解和新间隔DNA的连接至关重要

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