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Cas9 specifies functional viral targets during CRISPR-Cas adaptation

机译:Cas9在CRISPR-Cas适应过程中指定功能性病毒靶标

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摘要

Clustered, regularly interspaced, short palindromic repeat (CRISPR) loci and their associated (Cas) proteins provide adaptive immunity against viral infection in prokaryotes. Upon infection, short phage sequences known as spacers integrate between CRISPR repeats and are transcribed into small RNA guides that identify the viral targets (protospacers) of the Cas9 nuclease. Streptococcus pyogenes Cas9 cleavage of the viral genome requires the presence of an NGG protospacer adjacent motif (PAM) sequence immediately downstream of the target. It is not known if and how viral sequences with the correct PAM are chosen as new spacers. Here we show that Cas9 specifies functional PAM sequences during spacer acquisition. The replacement of cas9 with alleles that lack the PAM recognition motif or recognize an NGGNG PAM eliminated or changed PAM specificity during spacer acquisition, respectively. Cas9 associates with other proteins of the acquisition machinery (Cas1, Cas2 and Csn2), presumably to provide PAM-specificity to this process. These results establish a new function for Cas9 in the genesis of the prokaryotic immunological memory.
机译:簇状,规则间隔,短回文重复(CRISPR)基因座及其相关(Cas)蛋白提供了针对原核生物病毒感染的适应性免疫力。感染后,称为间隔子的短噬菌体序列整合在CRISPR重复序列之间,并转录成小RNA向导,以识别Cas9核酸酶的病毒靶标(原间隔子)。化脓性链球菌Cas9的病毒基因组切割需要在靶标下游立即存在NGG原型间隔子邻近基序(PAM)序列。不知道是否以及如何选择具有正确PAM的病毒序列作为新的间隔子。在这里,我们显示Cas9在间隔区获取过程中指定了功能性PAM序列。用缺少PAM识别基序或识别NGGNG PAM的等位基因替换cas9,可消除间隔区获取过程中消除或改变的PAM特异性。 Cas9与采集机制的其他蛋白质(Cas1,Cas2和Csn2)结合,大概是为该过程提供PAM特异性。这些结果在原核免疫记忆的发生中建立了Cas9的新功能。

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