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Modulating the Cascade architecture of a minimal Type I-F CRISPR-Cas system

机译:调节最小型I-F CRISPR-Cas系统的级联架构

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摘要

Shewanella putrefaciens CN-32 contains a single Type I-Fv CRISPR-Cas system which confers adaptive immunity against bacteriophage infection. Three Cas proteins (Cas6f, Cas7fv, Cas5fv) and mature CRISPR RNAs were shown to be required for the assembly of an interference complex termed Cascade. The Cas protein-CRISPR RNA interaction sites within this complex were identified via mass spectrometry. Additional Cas proteins, commonly described as large and small subunits, that are present in all other investigated Cascade structures, were not detected. We introduced this minimal Type I system in Escherichia coli and show that it provides heterologous protection against lambda phage. The absence of a large subunit suggests that the length of the crRNA might not be fixed and recombinant Cascade complexes with drastically shortened and elongated crRNAs were engineered. Size-exclusion chromatography and small-angle X-ray scattering analyses revealed that the number of Cas7fv backbone subunits is adjusted in these shortened and extended Cascade variants. Larger Cascade complexes can still confer immunity against lambda phage infection in E. coli. Minimized Type I CRISPR-Cas systems expand our understanding of the evolution of Cascade assembly and diversity. Their adjustable crRNA length opens the possibility for customizing target DNA specificity.
机译:腐臭希瓦氏菌CN-32包含单个I-Fv CRISPR-Cas系统,可赋予针对噬菌体感染的适应性免疫力。已证明需要三个Cas蛋白(Cas6f,Cas7fv,Cas5fv)和成熟的CRISPR RNA来组装称为Cascade的干扰复合物。通过质谱鉴定该复合物中的Cas蛋白-CRISPR RNA相互作用位点。未检测到存在于所有其他研究级联结构中的其他Cas蛋白,通常被描述为大亚基和小亚基。我们在大肠杆菌中引入了这种最小的I型系统,并表明它提供了针对λ噬菌体的异源保护。缺少大的亚基提示crRNA的长度可能不固定,并且设计了具有急剧缩短和延长的crRNA的重组Cascade复合物。尺寸排阻色谱法和小角X射线散射分析表明,在这些缩短和扩展的Cascade变体中,Cas7fv骨架亚基的数量得到了调节。较大的级联复合物仍可赋予大肠杆菌抗λ噬菌体感染的免疫力。最小化的I型CRISPR-Cas系统扩展了我们对级联装配和多样性进化的理解。它们可调节的crRNA长度为定制目标DNA特异性开辟了可能性。

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