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首页> 外文期刊>The Journal of biological chemistry >Adaptation induced by self-targeting in a type I-B CRISPR-Cas system
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Adaptation induced by self-targeting in a type I-B CRISPR-Cas system

机译:在I-B型CISCR-CAS系统中自定位引起的适应

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摘要

Haloferax volcanii is, to our knowledge, the only prokaryote known to tolerate CRISPR-Cas–mediated damage to its genome in the WT background; the resulting cleavage of the genome is repaired by homologous recombination restoring the WT version. In mutant Haloferax strains with enhanced self-targeting, cell fitness decreases and microhomology-mediated end joining becomes active, generating deletions in the targeted gene. Here we use self-targeting to investigate adaptation in H. volcanii CRISPR-Cas type I-B. We show that self-targeting and genome breakage events that are induced by self-targeting, such as those catalyzed by active transposases, can generate DNA fragments that are used by the CRISPR-Cas adaptation machinery for integration into the CRISPR loci. Low cellular concentrations of self-targeting crRNAs resulted in acquisition of large numbers of spacers originating from the entire genomic DNA. In contrast, high concentrations of self-targeting crRNAs resulted in lower acquisition that was mostly centered on the targeting site. Furthermore, we observed na?ve spacer acquisition at a low level in WT Haloferax cells and with higher efficiency upon overexpression of the Cas proteins Cas1, Cas2, and Cas4. Taken together, these findings indicate that na?ve adaptation is a regulated process in H. volcanii that operates at low basal levels and is induced by DNA breaks.
机译:卤代克萨克斯Volcanii是我们的知识,唯一已知的原质油,以耐受Crispr-CAS介导的损伤在WT背景中的基因组;通过同源重组恢复WT版本修复了基因组的所得分裂。在具有增强的自靶向的突变体Haloferax菌株中,细胞适应度降低,微噬菌学介导的末端接合变为活性,在靶向基因中产生缺失。在这里,我们使用自定位来调查H. Volcanii Crisp-CAS类型I-B中的适应。我们表明,通过自靶塑诱导的自定位和基因组破裂事件,例如由活性转座酶催化的那些,可以产生CRISPR-CAS适配机器用于集成到CRISPL基因座中的DNA片段。低细胞浓度的自定位CRRNA导致源自整个基因组DNA的大量间隔物。相反,高浓度的自定位CRRNA导致较低的采集,其主要是靶向位点。此外,我们观察到WT haloferax细胞中的低水平的Na ve间隔物采集,并且在Cas蛋白Cas1,Cas2和Cas4的过表达时具有更高的效率。在一起,这些发现表明Na'Ve适应是在低基础水平下运行的Volcanii中的受调节过程,并被DNA断裂诱导。

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