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高通量变异文库和机器学习为反转录子基因编辑器产生设计规则。

High throughput variant libraries and machine learning yield design rules for retron gene editors.

作者信息

Crawford Kate D, Khan Asim G, Lopez Santiago C, Goodarzi Hani, Shipman Seth L

机构信息

Gladstone Institute of Data Science and Biotechnology, 1650 Owens St, San Francisco, CA 94158, USA.

Graduate Program in Bioengineering, University of California, San Francisco and Berkeley, 1700 Fourth St, San Francisco, CA 94158, USA.

出版信息

Nucleic Acids Res. 2025 Jan 11;53(2). doi: 10.1093/nar/gkae1199.

Abstract

The bacterial retron reverse transcriptase system has served as an intracellular factory for single-stranded DNA in many biotechnological applications. In these technologies, a natural retron non-coding RNA (ncRNA) is modified to encode a template for the production of custom DNA sequences by reverse transcription. The efficiency of reverse transcription is a major limiting step for retron technologies, but we lack systematic knowledge of how to improve or maintain reverse transcription efficiency while changing the retron sequence for custom DNA production. Here, we test thousands of different modifications to the Retron-Eco1 ncRNA and measure DNA production in pooled variant library experiments, identifying regions of the ncRNA that are tolerant and intolerant to modification. We apply this new information to a specific application: the use of the retron to produce a precise genome editing donor in combination with a CRISPR-Cas9 RNA-guided nuclease (an editron). We use high-throughput libraries in Saccharomyces cerevisiae to additionally define design rules for editrons. We extend our new knowledge of retron DNA production and editron design rules to human genome editing to achieve the highest efficiency Retron-Eco1 editrons to date.

摘要

细菌反转录子逆转录酶系统在许多生物技术应用中一直作为单链DNA的细胞内工厂。在这些技术中,天然的反转录子非编码RNA(ncRNA)经过修饰,通过逆转录来编码用于生产定制DNA序列的模板。逆转录效率是反转录子技术的一个主要限制步骤,但在为定制DNA生产而改变反转录子序列时,我们缺乏关于如何提高或维持逆转录效率的系统知识。在这里,我们对Retron-Eco1 ncRNA进行了数千种不同的修饰测试,并在汇集变体文库实验中测量DNA产量,确定了ncRNA中对修饰耐受和不耐受的区域。我们将这些新信息应用于一个特定应用:将反转录子与CRISPR-Cas9 RNA引导核酸酶结合使用以产生精确的基因组编辑供体(编辑子)。我们在酿酒酵母中使用高通量文库来进一步定义编辑子的设计规则。我们将关于反转录子DNA生产和编辑子设计规则的新知识扩展到人类基因组编辑,以实现迄今为止效率最高的Retron-Eco1编辑子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eda/11754653/748b7af5dd96/gkae1199figgra1.jpg

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