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Repeat modularity as a beneficial property of multiple CRISPR-Cas systems

机译:重复模块化作为多个CASPR-CAS系统的有益特性

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CRISPR-Cas systems are a highly effective immune mechanism for prokaryotes, providing defense against invading foreign DNA. By definition, all CRISPR-Cas systems have short repeats interspersing their spacers. These repeats play a key role in preventing cleavage of self DNA and in the integration of new spacers. Here we focus on the phenomenon of repeat modularity, namely the unexpectedly high degree of repeat conservation across different systems within a genome or between different species. We hypothesize that modularity can be beneficial for CRISPR-Cas containing organisms, because it facilitates horizontal acquisition of ‘pre-immunized’ CRISPR arrays and allows the utilization of spacers acquired by one system for use by other systems within the same cell.
机译:CRISPR-CAS系统是对原核生物的高效免疫机制,为入侵外国DNA提供防御。 根据定义,所有CRISPR-CAS系统都有短暂的重复穿插着它们的垫片。 这些重复在预防自我DNA和整合新间隔物中起着关键作用。 在这里,我们专注于重复模块化的现象,即在基因组内或不同物种之间的不同系统中出乎意料地高的重复节约。 我们假设模块化可以有利于CRISPR-CAS含有生物体,因为它有助于水平获取'预免疫的'CRISPR阵列,并允许使用一个系统获得的间隔物用于由同一细胞内的其他系统使用。

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