AAV载体的空间基因组学揭示了转录串扰机制,使大的遗传货物靶向递送

IF 33.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Gerard M. Coughlin, Máté Borsos, Bre’Anna H. Barcelona, Nathan Appling, Acacia M. H. Mayfield, Elisha D. Mackey, Rana A. Eser, Cameron R. Jackson, Xinhong Chen, Sripriya Ravindra Kumar, Viviana Gradinaru
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引用次数: 0

摘要

细胞类型特异性调控元件(如增强子)可以将重组腺相关病毒(aav)直接表达到特定的细胞类型,但这种方法受到aav相对较小的包装容量的限制。在这项研究中,我们利用空间基因组学表明,单个AAV基因组之间的转录串扰通过将远端作用的调控元件分离到第二个AAV基因组中,为大货物的细胞类型特异性表达提供了一种通用方法。我们鉴定并分析了携带11种不同增强子的AAV基因组中的转录串扰。我们开发了空间基因组学方法来鉴定和定位AAV基因组及其在培养细胞和组织中的串联形式,我们在这里证明了转录串扰依赖于串联结构的形成。最后,我们利用转录串扰以系统管理的工程aav以细胞类型特异性的方式驱动3.2 kb Cas9货物的表达,并且我们在概括已知疾病表型的野生型小鼠中展示了aav传递的微创细胞类型特异性基因编辑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spatial genomics of AAV vectors reveals mechanism of transcriptional crosstalk that enables targeted delivery of large genetic cargo

Spatial genomics of AAV vectors reveals mechanism of transcriptional crosstalk that enables targeted delivery of large genetic cargo

Cell-type-specific regulatory elements such as enhancers can direct expression of recombinant adeno-associated viruses (AAVs) to specific cell types, but this approach is limited by the relatively small packaging capacity of AAVs. In this study, we used spatial genomics to show that transcriptional crosstalk between individual AAV genomes provides a general method for cell-type-specific expression of large cargo by separating distally acting regulatory elements into a second AAV genome. We identified and profiled transcriptional crosstalk in AAV genomes carrying 11 different enhancers active in mouse brain. We developed spatial genomics methods to identify and localize AAV genomes and their concatemeric forms in cultured cells and in tissue, and we demonstrate here that transcriptional crosstalk is dependent upon concatemer formation. Finally, we leveraged transcriptional crosstalk to drive expression of a 3.2-kb Cas9 cargo in a cell-type-specific manner with systemically administered engineered AAVs, and we demonstrate AAV-delivered, minimally invasive, cell-type-specific gene editing in wild-type mice that recapitulates known disease phenotypes.

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来源期刊
Nature biotechnology
Nature biotechnology 工程技术-生物工程与应用微生物
CiteScore
63.00
自引率
1.70%
发文量
382
审稿时长
3 months
期刊介绍: Nature Biotechnology is a monthly journal that focuses on the science and business of biotechnology. It covers a wide range of topics including technology/methodology advancements in the biological, biomedical, agricultural, and environmental sciences. The journal also explores the commercial, political, ethical, legal, and societal aspects of this research. The journal serves researchers by providing peer-reviewed research papers in the field of biotechnology. It also serves the business community by delivering news about research developments. This approach ensures that both the scientific and business communities are well-informed and able to stay up-to-date on the latest advancements and opportunities in the field. Some key areas of interest in which the journal actively seeks research papers include molecular engineering of nucleic acids and proteins, molecular therapy, large-scale biology, computational biology, regenerative medicine, imaging technology, analytical biotechnology, applied immunology, food and agricultural biotechnology, and environmental biotechnology. In summary, Nature Biotechnology is a comprehensive journal that covers both the scientific and business aspects of biotechnology. It strives to provide researchers with valuable research papers and news while also delivering important scientific advancements to the business community.
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