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Structure of the archaeal Cascade subunit Csa5: Relating the small subunits of CRISPR effector complexes

机译:古细菌级联亚基Csa5的结构:与CRISPR效应子复合物的小亚基相关

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The Cascade complex for CRISPR-mediated antiviral immunity uses CRISPR RNA (crRNA) to target invading DNA species from mobile elements such as viruses, leading to their destruction. The core of the Cascade effector complex consists of the Cas5 and Cas7 subunits, which are widely conserved in prokaryotes. Cas7 binds crRNA and forms the helical backbone of Cascade. Many archaea encode a version of the Cascade complex (denoted Type I-A) that includes a Csa5 (or small) subunit, which interacts weakly with the core proteins. Here, we report the crystal structure of the Csa5 protein from Sulfolobus solfataricus. Csa5 comprises a conserved α-helical domain with a small insertion consisting of a weakly conserved β-strand domain. In the crystal, the Csa5 monomers have multimerized into infinite helical threads. At each interface is a strictly conserved intersubunit salt bridge, deletion of which disrupts multimerization. Structural analysis indicates a shared evolutionary history among the small subunits of the CRISPR effector complexes. The same α-helical domain is found in the C-terminal domain of Cse2 (from Type I-E Cascade), while the N-terminal domain of Cse2 is found in Cmr5 of the CMR (Type III-B) effector complex. As Cmr5 shares no match with Csa5, two possibilities present themselves: selective domain loss from an ancestral Cse2 to create two new subfamilies or domain fusion of two separate families to create a new Cse2 family. A definitive answer awaits structural studies of further small subunits from other CRISPR effector complexes.
机译:用于CRISPR介导的抗病毒免疫的Cascade复合物使用CRISPR RNA(crRNA)靶向来自病毒等移动元件的入侵DNA物种,从而导致其被破坏。级联效应复合体的核心由在原核生物中广泛保守的Cas5和Cas7亚基组成。 Cas7结合crRNA并形成Cascade的螺旋骨架。许多古细菌编码包括Csa5(或小的)亚基的Cascade复合体(表示为I-A型)的一种形式,该亚基与核心蛋白之间的相互作用较弱。在这里,我们报告从Sulfolobus solfataricus Csa5蛋白的晶体结构。 Csa5包含一个保守的α-螺旋结构域,带有一个由弱保守的β-链结构域组成的小插入片段。在晶体中,Csa5单体已多聚成无限的螺旋线。在每个界面上都有一个严格保守的亚基间盐桥,其缺失会破坏多聚反应。结构分析表明CRISPR效应子复合物的小亚基之间有共同的进化历史。在Cse2的C末端结构域(来自I-E级联)中发现了相同的α螺旋结构域,而在CMR(III-B型)效应复合物的Cmr5中发现了Cse2的N末端结构域。由于Cmr5与Csa5不匹配,因此存在两种可能性:祖先的Cse2选择性丧失域以创建两个新的亚家族,或两个独立家族的域融合以创建新的Cse2家族。一个明确的答案正在等待其他CRISPR效应子复合物的进一步小亚基的结构研究。

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