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从未培养微生物中发现的紧凑型 Cas9d 和 HEARO 酶用于基因组编辑。

Compact Cas9d and HEARO enzymes for genome editing discovered from uncultivated microbes.

机构信息

Metagenomi Inc. 1545 Park Ave, Emeryville, CA, 94608, USA.

出版信息

Nat Commun. 2022 Dec 15;13(1):7602. doi: 10.1038/s41467-022-35257-7.

Abstract

Programmable, RNA-guided nucleases are diverse enzymes that have been repurposed for biotechnological applications. However, to further expand the therapeutic application of these tools there is a need for targetable systems that are small enough to be delivered efficiently. Here, we mined an extensive genome-resolved metagenomics database and identified families of uncharacterized RNA-guided, compact nucleases (between 450 and 1,050 aa). We report that Cas9d, a new CRISPR type II subtype, contains Zinc-finger motifs and high arginine content, features that we also found in nucleases related to HEARO effectors. These enzymes exhibit diverse biochemical characteristics and are broadly targetable. We show that natural Cas9d enzymes are capable of genome editing in mammalian cells with >90% efficiency, and further engineered nickase variants into the smallest base editors active in E. coli and human cells. Their small size, broad targeting potential, and translatability suggest that Cas9d and HEARO systems will enable a variety of genome editing applications.

摘要

可编程的 RNA 引导核酸酶是多种多样的酶,已被重新用于生物技术应用。然而,为了进一步扩大这些工具的治疗应用,需要有足够小的靶向系统,以便有效地进行输送。在这里,我们挖掘了一个广泛的基因组解析宏基因组数据库,并鉴定了未表征的 RNA 引导的紧凑型核酸酶家族(450 到 1050 个氨基酸)。我们报告说,Cas9d,一种新的 CRISPR Ⅱ型亚类,包含锌指模体和高精氨酸含量,我们也在与 HEARO 效应器相关的核酸酶中发现了这些特征。这些酶表现出不同的生化特征,具有广泛的靶向性。我们表明,天然 Cas9d 酶能够在哺乳动物细胞中进行超过 90%的基因组编辑,并且进一步将缺口酶变体工程化为在大肠杆菌和人类细胞中具有活性的最小碱基编辑器。它们的体积小、靶向潜力广泛和可翻译性表明,Cas9d 和 HEARO 系统将能够实现各种基因组编辑应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fcf/9755519/7669aa19a8ac/41467_2022_35257_Fig1_HTML.jpg

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