首页> 外文期刊>Nucleic Acids Research >CRISPR-Cas adaptation in Escherichia coli requires RecBCD helicase but not nuclease activity, is independent of homologous recombination, and is antagonized by 5 ' ssDNA exonucleases
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CRISPR-Cas adaptation in Escherichia coli requires RecBCD helicase but not nuclease activity, is independent of homologous recombination, and is antagonized by 5 ' ssDNA exonucleases

机译:Carch-CAS适应大肠杆菌需要Recbcd Helicase但不是核酸酶活性,与同源重组无关,并通过5'SSDNA外切核酸酶拮抗。

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摘要

Prokaryotic adaptive immunity is established against mobile genetic elements (MGEs) by 'naive adaptation' when DNA fragments from a newly encountered MGE are integrated into CRISPR-Cas systems. In Escherichia coli, DNA integration catalyzed by Cas1-Cas2 integrase is well understood in mechanistic and structural detail but much less is known about events prior to integration that generate DNA for capture by Cas1-Cas2. Naive adaptation in E. coli is thought to depend on the DNA helicase-nuclease RecBCD for generating DNA fragments for capture by Cas1-Cas2. The genetics presented here show that naive adaptation does not require RecBCD nuclease activity but that helicase activity may be important. RecA loading by RecBCD inhibits adaptation explaining previously observed adaptation phenotypes that implicated RecBCD nuclease activity. Genetic analysis of other E. coli nucleases and naive adaptation revealed that 5' ssDNA tailed DNA molecules promote new spacer acquisition. We show that purified E. coli Cas1-Cas2 complex binds to and nicks 5' ssDNA tailed duplexes and propose that E. coli Cas1-Cas2 nuclease activity on such DNA structures supports naive adaptation.
机译:原核适应性免疫抵抗可移动遗传元件(MGES)由“幼稚适应”成立时从一个新遇到的MGE DNA片段被整合到CRISPR-CAS系统。在大肠杆菌中,通过CAS1-CAS2整合酶催化的DNA整合是很好理解的在机械和结构的细节,但要少得多被知道关于积分之前对事件产生DNA用于通过CAS1-CAS2捕获。在大肠杆菌中幼稚适应被认为依赖于用于产生的DNA片段通过CAS1-CAS2捕获的DNA解旋酶核酸酶RecBCD。遗传学这里介绍显示,天真适应不需要RecBCD核酸酶活性但解旋酶的活性可能是重要的。 RecA的装载由RecBCD抑制适应解释牵连RecBCD核酸酶活性的先前观察到的表型适应。其他大肠杆菌核酸酶和幼稚适应的遗传分析表明,5' 尾的ssDNA的DNA分子促进新型间隔采集。我们表明,纯化的大肠杆菌CAS1-CAS2复合物结合并刻痕5' 单链DNA尾双链体并建议对这种DNA结构的载体幼稚适应大肠杆菌CAS1-CAS2核酸酶活性。

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