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CRISPR-Cas12a Nucleases Bind Flexible DNA Duplexes without RNA/DNA Complementarity

机译:CRISPR-Cas12a核酸酶结合灵活的DNA双链体而无RNA / DNA互补性

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Cas12a (also known as “Cpf1”) is a class 2 type V-A CRISPR-associated nuclease that can cleave double-stranded DNA at specific sites. The Cas12a effector enzyme comprises a single protein and a CRISPR-encoded small RNA (crRNA) and has been used for genome editing and manipulation. Work reported here examined in vitro interactions between the Cas12a effector enzyme and DNA duplexes with varying states of base-pairing between the two strands. The data revealed that in the absence of complementarity between the crRNA guide and the DNA target-strand, Cas12a binds duplexes with unpaired segments. These off-target duplexes were bound at the Cas12a site responsible for RNA-guided double-stranded DNA binding but were not cleaved due to the lack of RNA/DNA hybrid formation. Such promiscuous binding was attributed to increased DNA flexibility induced by the unpaired segment present next to the protospacer-adjacent-motif. The results suggest that target discrimination of Cas12a can be influenced by flexibility of the DNA. As such, in addition to the linear sequence, flexibility and other physical properties of the DNA should be considered in Cas12a-based genome engineering applications.
机译:Cas12a(也称为“ Cpf1”)是2类与V-A CRISPR相关的核酸酶,可以在特定位点切割双链DNA。 Cas12a效应酶包含单一蛋白质和CRISPR编码小RNA(crRNA),已用于基因组编辑和操作。此处报道的工作检查了Cas12a效应酶和DNA双链体之间的体外相互作用,两条链之间碱基配对的状态不同。数据显示,在crRNA向导和DNA靶链之间不存在互补性的情况下,Cas12a结合具有不成对区段的双链体。这些脱靶双链体在负责RNA引导的双链DNA结合的Cas12a位点结合,但由于缺少RNA / DNA杂合体形成而未被切割。这种混杂的结合归因于存在于原间隔物-邻近基序旁边的未配对区段诱导的DNA柔性的增加。结果表明,Cas12a的靶标识别可受DNA柔韧性的影响。因此,在基于Cas12a的基因组工程应用中,除了线性序列外,还应考虑DNA的灵活性和其他物理特性。

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