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使用基于CRISPR的工具包成功进行基因组编辑应用的设计原则。

Design principle of successful genome editing applications using CRISPR-based toolkits.

作者信息

Sharma Juhi, Biswas Rajesh, Khare Prashant

机构信息

Xenesis, Absolute, 5 th Floor,Plot 68, Sector 44, Haryana, 122003, Gurugram, India.

出版信息

J Appl Genet. 2025 Jul 1. doi: 10.1007/s13353-025-00979-z.

Abstract

Clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated (Cas) proteins are the most promising toolkit of synthetic biology for genetic engineering applications across species. Essentially, the Type II CRISPR system, featuring Cas9 nuclease from Streptococcus pyogenes complexed with sgRNA, introduces targeted DNA cleavage, enabling modifications with exceptional precision. This technology can be utilized for not only editing but also modulating gene expressions, thereby finding widespread utility in various biotechnological applications. Here we discuss strategies to construct a consolidated platform aiming at developing a CRISPR-based gene editing system in microbial hosts such as yeast. Employing the well-known gene editing enzymes, i.e., Cpf1 and dCas9, two independent strategies to develop a one-pot plasmid system have been proposed. Furthermore, approaches to reduce off-target cleavages introduced by non-specific targeting of CRISPR complex have been discussed. Finally, an overarching discussion on advanced strategies to design robust CRISPR components is provided for streamlining future genome editing applications.

摘要

成簇规律间隔短回文重复序列(CRISPR)和CRISPR相关(Cas)蛋白是合成生物学中最具前景的工具集,可用于跨物种的基因工程应用。本质上,II型CRISPR系统以化脓性链球菌的Cas9核酸酶与sgRNA复合为特征,可实现靶向DNA切割,从而实现极高精度的修饰。该技术不仅可用于编辑,还可用于调节基因表达,因此在各种生物技术应用中具有广泛的用途。在此,我们讨论构建一个整合平台的策略,旨在开发一种基于CRISPR的基因编辑系统,用于酵母等微生物宿主。利用著名的基因编辑酶,即Cpf1和dCas9,已经提出了两种独立的策略来开发一锅法质粒系统。此外,还讨论了减少CRISPR复合物非特异性靶向引入的脱靶切割的方法。最后,提供了关于设计强大的CRISPR组件的先进策略的总体讨论,以简化未来的基因组编辑应用。

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