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具有富含 C 的 PAM 识别基序的新型 CRISPR 型 V 型核酸酶家族。

A new family of CRISPR-type V nucleases with C-rich PAM recognition.

机构信息

CasZyme, Vilnius, Lithuania.

Institute of Biotechnology, Vilnius University, Vilnius, Lithuania.

出版信息

EMBO Rep. 2022 Dec 6;23(12):e55481. doi: 10.15252/embr.202255481. Epub 2022 Oct 21.

Abstract

Most CRISPR-type V nucleases are stimulated to cleave double-stranded (ds) DNA targets by a T-rich PAM, which restricts their targeting range. Here, we identify and characterize a new family of type V RNA-guided nuclease, Cas12l, that exclusively recognizes a C-rich (5'-CCY-3') PAM. The organization of genes within its CRISPR locus is similar to type II-B CRISPR-Cas9 systems, but both sequence analysis and functional studies establish it as a new family of type V effector. Biochemical experiments show that Cas12l nucleases function optimally between 37 and 52°C, depending on the ortholog, and preferentially cut supercoiled DNA. Like other type V nucleases, it exhibits collateral nonspecific ssDNA and ssRNA cleavage activity that is triggered by ssDNA or dsDNA target recognition. Finally, we show that one family member, Asp2Cas12l, functions in a heterologous cellular environment, altogether, suggesting that this new group of CRISPR-associated nucleases may be harnessed as genome editing reagents.

摘要

大多数 CRISPR 型 V 核酸酶通过富含 T 的 PAM 被刺激切割双链 (ds) DNA 靶标,这限制了它们的靶向范围。在这里,我们鉴定并表征了一种新型的 V 型 RNA 指导的核酸酶 Cas12l,它专门识别富含 C 的 (5'-CCY-3') PAM。其 CRISPR 基因座内的基因组织类似于 II-B 型 CRISPR-Cas9 系统,但序列分析和功能研究都将其确立为 V 型效应子的一个新家族。生化实验表明,Cas12l 核酸酶在 37 和 52°C 之间的最佳工作温度取决于同源物,并优先切割超螺旋 DNA。与其他 V 型核酸酶一样,它表现出旁切非特异性 ssDNA 和 ssRNA 切割活性,该活性由 ssDNA 或 dsDNA 靶标识别触发。最后,我们表明,一个家族成员 Asp2Cas12l 在异源细胞环境中发挥作用,总之,这表明这组新的 CRISPR 相关核酸酶可能被用作基因组编辑试剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff5d/9724661/60b45198bd10/EMBR-23-e55481-g006.jpg

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