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利用工程化的碱基编辑器和多样化的RNA阵列进行正交和多重基因扰动。

Orthogonal and multiplexable genetic perturbations with an engineered prime editor and a diverse RNA array.

作者信息

Yuan Qichen, Zeng Hongzhi, Daniel Tyler C, Liu Qingzhuo, Yang Yongjie, Osikpa Emmanuel C, Yang Qiaochu, Peddi Advaith, Abramson Liliana M, Zhang Boyang, Xu Yong, Gao Xue

机构信息

Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, USA.

Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Nat Commun. 2024 Dec 30;15(1):10868. doi: 10.1038/s41467-024-55134-9.

Abstract

Programmable and modular systems capable of orthogonal genomic and transcriptomic perturbations are crucial for biological research and treating human genetic diseases. Here, we present the minimal versatile genetic perturbation technology (mvGPT), a flexible toolkit designed for simultaneous and orthogonal gene editing, activation, and repression in human cells. The mvGPT combines an engineered compact prime editor (PE), a fusion activator MS2-p65-HSF1 (MPH), and a drive-and-process multiplex array that produces RNAs tailored to different types of genetic perturbation. mvGPT can precisely edit human genome via PE coupled with a prime editing guide RNA and a nicking guide RNA, activate endogenous gene expression using PE with a truncated single guide RNA containing MPH-recruiting MS2 aptamers, and silence endogenous gene expression via RNA interference with a short-hairpin RNA. We showcase the versatility of mvGPT by simultaneously correcting a c.3207C>A mutation in the ATP7B gene linked to Wilson's disease, upregulating the PDX1 gene expression to potentially treat Type I diabetes, and suppressing the TTR gene to manage transthyretin amyloidosis. In addition to plasmid delivery, we successfully utilize various methods to deliver the mvGPT payload, demonstrating its potential for future in vivo applications.

摘要

能够进行正交基因组和转录组扰动的可编程模块化系统对于生物学研究和治疗人类遗传疾病至关重要。在此,我们展示了最小通用基因扰动技术(mvGPT),这是一种灵活的工具包,设计用于在人类细胞中同时进行正交基因编辑、激活和抑制。mvGPT结合了工程化的紧凑型碱基编辑器(PE)、融合激活剂MS2-p65-HSF1(MPH)以及一个驱动和处理多重阵列,该阵列可产生针对不同类型基因扰动量身定制的RNA。mvGPT可以通过将PE与碱基编辑引导RNA和切口引导RNA相结合来精确编辑人类基因组,使用带有包含MPH招募MS2适体的截短单引导RNA的PE激活内源性基因表达,并通过短发夹RNA的RNA干扰使内源性基因表达沉默。我们通过同时校正与威尔逊病相关的ATP7B基因中的c.3207C>A突变、上调PDX1基因表达以潜在治疗I型糖尿病以及抑制TTR基因以治疗转甲状腺素蛋白淀粉样变性,展示了mvGPT的多功能性。除了质粒递送外,我们还成功利用各种方法递送mvGPT有效载荷,证明了其在未来体内应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14ba/11685949/8f9c5aaac76d/41467_2024_55134_Fig1_HTML.jpg

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