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CRISPR-Cas Systems Optimize Their Immune Response by Specifying the Site of Spacer Integration

机译:CRISPR-Cas系统通过指定间隔子整合位点来优化其免疫反应

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摘要

CRISPR-Cas systems defend prokaryotes against viruses and plasmids. Short DNA segments of the invader, known as spacers, are stored in the CRISPR array as immunological memories. New spacers are added invariably to the 50 end of the array; therefore, the first spacer matches the latest foreign threat. Whether this highly polarized order of spacer insertion influences CRISPR-Cas immunity has not been explored. Here we show that a conserved sequence located immediately upstream of the CRISPR array specifies the site of new spacer integration. Mutation of this sequence results in erroneous incorporation of new spacers into the middle of the array. We show that spacers added through polarized acquisition give rise to more robust CRISPR-Cas immunity than spacers added to the middle of the array. This study demonstrates that the CRISPR-Cas system specifies the site of spacer integration to optimize the immune response against the most immediate threat to the host.
机译:CRISPR-Cas系统可以保护原核生物免受病毒和质粒的侵害。入侵者的短DNA片段(称为间隔子)作为免疫记忆存储在CRISPR阵列中。始终将新的间隔物添加到阵列的50个末端;因此,第一个间隔符与最新的外国威胁相匹配。尚未探索这种高度极化的间隔子插入顺序是否影响CRISPR-Cas免疫。在这里,我们显示了位于CRISPR阵列上游的保守序列指定了新间隔子整合的位点。该序列的突变导致新间隔子错误地掺入阵列的中间。我们显示,通过极化采集添加的间隔物比添加到阵列中间的间隔物产生更强大的CRISPR-Cas免疫力。这项研究表明,CRISPR-Cas系统指定了间隔子整合的位点,以优化针对宿主的最直接威胁的免疫反应。

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