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The autoregulator Aca2 mediates anti-CRISPR repression

机译:自动调节器Aca2介导抗CRISPR抑制

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摘要

CRISPR-Cas systems are widespread bacterial adaptive defence mechanisms that provide protection against bacteriophages. In response, phages have evolved anti-CRISPR proteins that inactivate CRISPR-Cas systems of their hosts, enabling successful infection. Anti-CRISPR genes are frequently found in operons with genes encoding putative transcriptional regulators. The role, if any, of these anti-CRISPR-associated (aca) genes in anti-CRISPR regulation is unclear. Here, we show that Aca2, encoded by the Pectobacterium carotovorum temperate phage ZF40, is an autoregulator that represses the anti-CRISPR–aca2 operon. Aca2 is a helix-turn-helix domain protein that forms a homodimer and interacts with two inverted repeats in the anti-CRISPR promoter. The inverted repeats are similar in sequence but differ in their Aca2 affinity, and we propose that they have evolved to fine-tune, and downregulate, anti-CRISPR production at different stages of the phage life cycle. Specific, high-affinity binding of Aca2 to the first inverted repeat blocks the promoter and induces DNA bending. The second inverted repeat only contributes to repression at high Aca2 concentrations in vivo, and no DNA binding was detectable in vitro. Our investigation reveals the mechanism by which an Aca protein regulates expression of its associated anti-CRISPR.
机译:CRISPR-Cas系统是广泛的细菌自适应防御机制,可提供针对噬菌体的保护。作为回应,噬菌体进化出了抗CRISPR蛋白,可以使宿主的CRISPR-Cas系统失活,从而成功感染。抗CRISPR基因经常在操纵子中与编码假定的转录调节子的基因一起发现。这些抗CRISPR相关(aca)基因在抗CRISPR调控中的作用尚不清楚。在这里,我们显示了由菜肉杆菌温带菌噬菌体ZF40编码的Aca2是一种自动调节子,可抑制抗CRISPR-aca2操纵子。 Aca2是螺旋-转-螺旋结构域蛋白,形成同型二聚体并与抗CRISPR启动子中的两个反向重复序列相互作用。反向重复序列在序列上相似,但在Aca2亲和力上有所不同,我们建议它们已经进化以在噬菌体生命周期的不同阶段微调和下调抗CRISPR的产生。 Aca2与第一个反向重复序列的特异性,高亲和力结合会阻止启动子并诱导DNA弯曲。第二个反向重复序列仅在体内高Aca2浓度下有助于抑制,在体外未检测到DNA结合。我们的研究揭示了Aca蛋白调节其相关抗CRISPR表达的机制。

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