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CRISPR 工具包的新成员:CRISPR-Cas9 和 CRISPR-Cpf1 用于基因组编辑中的供体构建。

New Additions to the CRISPR Toolbox: CRISPR- and CRISPR- for Donor Construction in Genome Editing.

机构信息

CRISPR and Genome Editing Resource Center, The Rockefeller University, New York, New York, USA.

Laboratory of Molecular and Cellular Neuroscience, The Rockefeller University, New York, New York, USA.

出版信息

CRISPR J. 2020 Apr;3(2):109-122. doi: 10.1089/crispr.2019.0062.

Abstract

CRISPR-Cas has proven to be the most versatile genetic tinkering system of our time, predominantly as a precision genome editing tool. Here, we demonstrate two additions to the repertoire of CRISPR's application for constructing donor DNA templates: CRISPR- and CRISPR-. CRISPR- (CRISPR-utting and igation f ucleic acid via ibson) was devised to enable efficient cut-and-paste of multiple complex DNA fragments by using CRISPR-Cas9 as a digestion alternative with precision and exclusivity features, followed by joining the digested products via Gibson Assembly, to construct double-stranded DNA and adeno-associated virus (AAV) donor vectors rapidly without cloning scars. CRISPR- (CRISPR-lipped ong ssDNA via ncising lasmid) was devised as a DNA clipping tool to retrieve long single-stranded DNA (lssDNA) efficiently from plasmid, up to 3.5 kbase, which can be supplied as the donor template for creating genetically engineered mice via -CRISPR. We utilized two different Cas types (Cpf1 and Cas9n) to induce two distinct incisions at the respective ends of the lssDNA cassette junctions on the plasmid, yielding three independent single-stranded DNA units of unique sizes eligible for strand separation, followed by target strand clip-out through gel extraction. The retrieval of the lssDNA donor circumvents involvements of restriction enzymes and DNA polymerase-based steps. Hence, it not only retains sequence fidelity but also carries virtually no restriction on sequence composition, further mitigating limitations on the current -CRISPR method. With the add-on feature of universal DNA-tag sequences of Cpf1-Cas9 duo protospacer adjacent motif, CRISPR- can be facile and applicable to generate lssDNA templates for any genomic target of choice. Additionally, we demonstrate robust gene editing efficiencies in the neuroblastoma cell line, as well as in mice attained with the AAV and lssDNA donors constructed herein.

摘要

CRISPR-Cas 已被证明是我们这个时代用途最广泛的基因修饰系统,主要作为一种精确的基因组编辑工具。在这里,我们展示了 CRISPR 应用的两个新功能,用于构建供体 DNA 模板:CRISPR- 和 CRISPR-。CRISPR-(CRISPR-utting 和 igation f ucleic acid via ibson)旨在通过使用 Cas9 作为替代消化酶,以精确和排他的方式实现多个复杂 DNA 片段的高效切割和粘贴,然后通过 Gibson 组装连接消化产物,快速构建双链 DNA 和腺相关病毒 (AAV) 供体载体,而无需克隆痕迹。CRISPR-(CRISPR-lipped ong ssDNA via ncising lasmid)是一种 DNA 剪接工具,用于从质粒中高效提取长达 3.5kb 的长单链 DNA(lssDNA),可作为通过 -CRISPR 构建基因工程小鼠的供体模板。我们利用两种不同的 Cas 类型(Cpf1 和 Cas9n)在质粒上 lssDNA 盒接头的相应末端诱导两个不同的切口,产生三个独立的具有独特大小的单链 DNA 单元,适合进行链分离,然后通过凝胶提取提取目标链。lssDNA 供体的回收绕过了限制酶和基于 DNA 聚合酶的步骤。因此,它不仅保留了序列保真度,而且对序列组成几乎没有限制,进一步减轻了当前 -CRISPR 方法的限制。通过添加 Cpf1-Cas9 双原间隔邻近基序的通用 DNA 标记序列的附加功能,CRISPR- 可以方便地应用于生成任何基因组靶标的 lssDNA 模板。此外,我们还证明了在此构建的 AAV 和 lssDNA 供体在神经母细胞瘤细胞系以及小鼠中具有强大的基因编辑效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ae/7194329/baf0d4715458/crispr.2019.0062_figure1.jpg

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