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Cas3 可刺激大肠杆菌中 ColE1 质粒的失控复制,并拮抗 RNaseHI。

Cas3 stimulates runaway replication of a ColE1 plasmid in Escherichia coli and antagonises RNaseHI.

机构信息

Faculty of Science, Department of Molecular Biology, University of Zagreb, Zagreb, Croatia.

出版信息

RNA Biol. 2013 May;10(5):770-8. doi: 10.4161/rna.23876. Epub 2013 Feb 13.

Abstract

Cas3 nuclease-helicase is part of CRISPR immunity systems in many bacteria and archaea. In type I CRISPR, Cas3 nuclease degrades invader DNA that has been base-paired to crRNA as an R-loop within a "Cascade" complex. An R-loop is a DNA-RNA hybrid that includes a displaced single-strand DNA loop. Purified Cas3 from E. coli and the archaeon M. thermautrophicus can process R-loops without DNA/RNA sequence specificity and without Cascade. This has potential to affect other aspects of microbial biology that involve R-loops. Regulatory RNAs and host cell proteins modulate replication of ColE1 plasmids (e.g., pUC) from R-loop primers. We observed that Cas3 could override endogenous control of a ColE1 replicon, stimulating uncontrolled ("runaway") replication and resulting in much higher plasmid yields. This effect was absent when using helicase-defective Cas3 (Cas3 (K320L) ) or a non-ColE1 plasmid, and was dependent on RNaseHI. Cas3 also promoted formation of plasmid multimers or concatemers, a phenotype consistent with deregulated ColE1 replication and typical of cells lacking RNaseHI. These effects of Cas3 on ColE1 plasmids are inconsistent with it unwinding R-loops in vivo, at least in this assay. We discuss a model of how Cas3 might be able to regulate RNA molecules in vivo, unless it is targeted to CRISPR defense by Cascade, or kept in check by RecG and RNaseHI.

摘要

Cas3 核酸酶-解旋酶是许多细菌和古菌中 CRISPR 免疫系统的一部分。在 I 型 CRISPR 中,Cas3 核酸酶降解与 crRNA 碱基配对的入侵 DNA,形成“级联”复合物中的 R 环。R 环是一种 DNA-RNA 杂交体,其中包括一个取代的单链 DNA 环。从大肠杆菌和古菌 M. thermautrophicus 中纯化的 Cas3 可以在没有 DNA/RNA 序列特异性和没有级联的情况下处理 R 环。这有可能影响涉及 R 环的其他微生物生物学方面。调节 RNA 和宿主细胞蛋白调节 ColE1 质粒(例如 pUC)从 R 环引物的复制。我们观察到 Cas3 可以覆盖 ColE1 复制子的内源性控制,刺激不受控制的(“失控”)复制,导致质粒产量大大提高。当使用无解旋酶活性的 Cas3(Cas3(K320L))或非 ColE1 质粒时,这种效应不存在,并且依赖于 RNaseHI。Cas3 还促进了质粒多聚体或串联体的形成,这一表型与不受调节的 ColE1 复制一致,并且是缺乏 RNaseHI 的细胞的典型特征。Cas3 对 ColE1 质粒的这些影响与它在体内解开 R 环的情况不一致,至少在这种测定中是这样。我们讨论了 Cas3 如何在体内调节 RNA 分子的模型,除非它被级联靶向 CRISPR 防御,或者被 RecG 和 RNaseHI 控制。

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本文引用的文献

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