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Development of a Cas12a-Based Genome Editing Tool for Moderate Thermophiles

机译:Cas12a-Based基因组编辑工具的发展对中度嗜热微生物

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The ability of CRISPR-Cas12a nucleases to function reliably in a wide range of species has been key to their rapid adoption as genome engineering tools. However, so far, Cas12a nucleases have been limited for use in organisms with growth temperaturesup to 37 °C. Here, we biochemically characterize three Cas12a orthologs for their temperature stability and activity. We demonstrate that Francisella novicida Cas12a (FnCas12a) has great biochemical potential for applications that require enhanced stability, including use at temperatures >37°C. Furthermore, by employing the moderate thermophilic bacterium Bacillus smithii as our experimental platform, we demonstrate that FnCas12a is active in vivo at temperatures up to 43°C. Subsequently, we developa single-plasmid FnCas12a-based genome editing tool for B. smithii, combining the FnCas12a targeting system with plasmid-borne homologous recombination (HR) templates that carry the desired modifications. Culturing of B. smithii cells at 45°C allows forthe uninhibited realization of the HR-based editing step, while a subsequent culturing step at reduced temperatures induces the efficient counterselection of the non-edited cells by FnCas12a. The developed gene-editing tool yields gene-knockout mutantswithin 3 days, and does not require tightly controllable expression of FnCas12a to achieve high editing efficiencies, indicating its potential for other (thermophilic) bacteria and archaea, including those with minimal genetic toolboxes. Altogether, ourfindings provide new biochemical insights into three widely used Cas12a nucleases, and establish the first Cas12a-based bacterial genome editing tools for moderate thermophilic microorganisms.
机译:CRISPR-Cas12a核酸酶功能的能力可靠地在一个广泛的物种一直是关键所在他们的快速应用基因组工程工具。被用于生物增长有限temperaturesup 37°C。描述三个Cas12a直接同源的温度稳定性和活动。证明弗朗西斯氏菌属novicida Cas12a(FnCas12a)伟大的生化潜力需要增强的应用程序稳定,包括使用温度> 37°C。通过采用中度嗜热细菌芽孢杆菌smithii作为我们的实验平台,我们证明FnCas12a活跃在体内气温高达43°C。developa single-plasmid FnCas12a-based基因组b . smithii编辑工具,结合FnCas12a plasmid-borne瞄准系统同源重组(人力资源)的模板携带所需的修改。smithii细胞在45°C允许为不羁HR-based编辑步骤的实现,而后续培养步骤降低温度诱发counterselection的效率由FnCas12a non-edited细胞。基因编辑工具收益率gene-knockoutmutantswithin 3天,不需要严格控制表达式的FnCas12a实现编辑效率很高,说明它其他(高温)细菌和潜力古生菌,包括那些以最小的基因工具箱。生化三广泛使用的见解Cas12a核酸酶,并建立第一个Cas12a-based细菌基因组编辑工具中度嗜热微生物。

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