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The role of Cas8?in type?I CRISPR interference

机译:Cas8?在I型CRISPR干扰中的作用

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摘要

CRISPR (clustered regularly interspaced short palindromic repeat) systems provide bacteria and archaea with adaptive immunity to repel invasive genetic elements. Type?I systems use ‘cascade’ [CRISPR-associated (Cas) complex for antiviral defence] ribonucleoprotein complexes to target invader DNA, by base pairing CRISPR RNA (crRNA) to protospacers. Cascade identifies PAMs (protospacer adjacent motifs) on invader DNA, triggering R-loop formation and subsequent DNA degradation by Cas3. Cas8 is a candidate PAM recognition factor in some cascades. We analysed Cas8 homologues from type?IB CRISPR systems in archaea Haloferax volcanii (Hvo) and Methanothermobacter thermautotrophicus (Mth). Cas8 was essential for CRISPR interference in Hvo and purified Mth Cas8 protein responded to PAM sequence when binding to nucleic acids. Cas8 interacted physically with Cas5–Cas7–crRNA complex, stimulating binding to PAM containing substrates. Mutation of conserved Cas8 amino acid residues abolished interference in?vivo and altered catalytic activity of Cas8 protein in?vitro. This is experimental evidence that Cas8 is important for targeting Cascade to invader DNA.
机译:CRISPR(聚类的规则间隔的短回文重复序列)系统为细菌和古细菌提供了适应性免疫力,以排斥侵入性遗传元素。 I型系统通过将CRISPR RNA(crRNA)与原型间隔子碱基配对,使用“级联” [用于抗病毒防御的CRISPR相关(Cas)复合物]核糖核蛋白复合物来靶向入侵者DNA。 Cascade可以识别入侵者DNA上的PAM(邻近间隔物的PAM),从而触发R环的形成并随后被Cas3降解。在某些级联中,Cas8是候选的PAM识别因子。我们分析了古细菌Haloferax volcanii(Hvo)和甲烷嗜热杆菌嗜热自养菌(Mth)的?IB CRISPR系统的Cas8同源物。 Cas8对CRISPR干扰Hvo至关重要,纯化的Mth Cas8蛋白与核酸结合后对PAM序列有反应。 Cas8与Cas5-Cas7-crRNA复合体发生物理相互作用,刺激与含PAM的底物的结合。保守的Cas8氨基酸残基的突变消除了体内干扰,并改变了Cas8蛋白的体外催化活性。这是实验证据,证明Cas8对于将Cascade靶向入侵者DNA至关重要。

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