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一种突变的Nme1Cas9在酵母中是LwaCas13a和RfxCas13d的功能性替代核糖核酸酶。

A Mutated Nme1Cas9 Is a Functional Alternative RNase to Both LwaCas13a and RfxCas13d in the Yeast .

作者信息

Zhang Yadan, Ge Huanhuan, Marchisio Mario Andrea

机构信息

School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, China.

出版信息

Front Bioeng Biotechnol. 2022 Jun 2;10:922949. doi: 10.3389/fbioe.2022.922949. eCollection 2022.

Abstract

CRISPR-Cas systems provide powerful biological tools for genetic manipulation and gene expression regulation. Class 2 systems, comprising type II, type V, and type VI, have the significant advantage to require a single effector Cas protein (Cas9, Cas12, and Cas13 respectively) to cleave nucleic acids upon binding the crRNA. Both Cas9 and Cas12 recognize DNA and induce a double-strand break in it. In contrast, Cas13 bind and cleave RNA exclusively. However, some Cas9 homologs have shown RNase activity as well. Here, we harnessed Nme1Cas9, LwaCas13a, and RfxCas13d to carry out gene downregulation in by triggering mRNA degradation. To avoid potential DNA damage, we mutated Nme1Cas9 into dNme1Cas9 that lost the nuclease activity of the RuvC domain but retained the active HNH domain, able to act on the target DNA strand and, therefore, on the corresponding transcript. Our results showed that dNme1Cas9 is a functional RNase although with moderate activity since it provoked a fluorescence reduction from 21% to 32%. Interestingly, dNme1Cas9 works in a PAM-independent way nor demands helper PAMmer molecules. LwaCas13a and RfxCas13d appeared substantially unfunctional in , though they were shown to perform well in mammalian cells. To the best of our knowledge, this is the first report about the working of a variant of Nme1Cas9 as an RNase and the issues connected with the usage of Cas13 proteins in .

摘要

CRISPR-Cas系统为基因操作和基因表达调控提供了强大的生物学工具。第2类系统包括II型、V型和VI型,具有显著优势,即仅需单个效应Cas蛋白(分别为Cas9、Cas12和Cas13)结合crRNA后即可切割核酸。Cas9和Cas12均识别DNA并诱导其双链断裂。相比之下,Cas13仅结合并切割RNA。然而,一些Cas9同源物也表现出核糖核酸酶活性。在此,我们利用Nme1Cas9、LwaCas13a和RfxCas13d通过触发mRNA降解在[具体生物]中进行基因下调。为避免潜在的DNA损伤,我们将Nme1Cas9突变为dNme1Cas9,其丧失了RuvC结构域的核酸酶活性,但保留了有活性的HNH结构域,能够作用于靶DNA链,进而作用于相应的转录本。我们的结果表明,dNme1Cas9是一种功能性核糖核酸酶,尽管活性适中,因为它使荧光降低了21%至32%。有趣的是,dNme1Cas9以不依赖PAM的方式起作用,也不需要辅助PAMmer分子。LwaCas13a和RfxCas13d在[具体生物]中似乎基本无功能,尽管它们在哺乳动物细胞中表现良好。据我们所知,这是关于Nme1Cas9变体作为核糖核酸酶的工作[情况]以及在[具体生物]中使用Cas13蛋白相关问题的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c657/9201564/9f4a7561f08b/fbioe-10-922949-g001.jpg

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