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Target RNA capture and cleavage by the Cmr type III-B CRISPR–cas effector complex

机译:CMR型RNA捕获和切割CMR III-B型CRAP-CAS效应复合物

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摘要

The effector complex of the Cmr/type III-B CRISPR (clustered regularly interspaced short palindromic repeat)–Cas (CRISPR-associated) system cleaves RNAs recognized by the CRISPR RNA (crRNA) of the complex and includes six protein subunits of unknown functions. Using reconstituted Pyrococcus furiosus Cmr complexes, we found that each of the six Cmr proteins plays a critical role in either crRNA interaction or target RNA capture. Cmr2, Cmr3, Cmr4, and Cmr5 are all required for formation of a crRNA-containing complex detected by native gel electrophoresis, and the conserved 5′ repeat sequence tag and 5′-OH group of the crRNA are essential for the interaction. Interestingly, capture of the complementary target RNA additionally requires both Cmr1 and Cmr6. In detailed functional studies, we determined that P. furiosus Cmr complexes cleave target RNAs at 6-nucleotide (nt) intervals in the region of complementarity, beginning 5 nt downstream from the crRNA tag and continuing to within ~14 nt of the 3′ end of the crRNA. Our findings indicate that Cmr3 recognizes the signature crRNA tag sequence (and depends on protein–protein interactions with Cmr2, Cmr4, and Cmr5), each Cmr4 subunit mediates a target RNA cleavage, and Cmr1 and Cmr6 mediate an essential interaction between the 3′ region of the crRNA and the target RNA.
机译:CMR / III-B型CRISPR的效应复合物(聚类定期间隙短的回文重复)-CAS(CRISPR相关)系统切割RNA被复合物的CRISPR RNA(CRRNA)识别的RNA,包括六种未知功能的六种蛋白质亚基。使用重构的Pyrococcus furoiosus CMR复合物,我们发现六种CMR蛋白中的每一个在CRRNA相互作用或靶RNA捕获中发挥着关键作用。 CMR2,CMR3,CMR4和CMR5全部是用于形成通过天然凝胶电泳检测的CRRNA的复合物,并且保守的5'重复序列标签和CRRNA的5'-OH基团对于相互作用是必不可少的。有趣的是,互补靶RNA的捕获另外需要CMR1和CMR6。在详细的功能性研究中,我们确定p. furoiosus cmr复合物在互补性区域中以6-核苷酸(nt)间隔的靶rNA切割,从CRRNA标签的下游开始,并继续在3'末端的〜14nt内延续crrna。我们的研究结果表明CMR3识别特征CRRNA标签序列(并取决于与CMR2,CMR4和CMR5的蛋白质​​ - 蛋白质相互作用),每个CMR4亚单位介导目标RNA切割,CMR1和CMR6介导3'区域之间的基本相互作用CRRNA和靶RNA。

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