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Efficient inter-species conjugative transfer of a CRISPR nuclease for targeted bacterial killing

机译:高效间的CRISPR核酸酶的蛋白蛋白酸酶靶向细菌杀伤

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The selective regulation of bacteria in complex microbial populations is key to controlling pathogenic bacteria. CRISPR nucleases can be programmed to kill bacteria, but require an efficient and broad-host range delivery system to be effective. Here, using an Escherichia coli and Salmonella enterica co-culture system, we show that plasmids based on the IncP RK2 conjugative system can be used as delivery vectors for a TevSpCas9 dual nuclease. Notably, a cis-acting plasmid that encodes the conjugation and CRISPR machinery conjugates from E. coli to S. enterica with high frequency compared to a trans system that separates conjugation and CRISPR machinery. In culture conditions that enhance cell-to-cell contact, conjugation rates approach 100% with the cis-acting plasmid. Targeting of single or multiplexed sgRNAs to non-essential genes results in high S. enterica killing efficiencies. Our data highlight the potential of cis-acting conjugative plasmids as a delivery system for CRISPR nucleases or other microbial-altering agents for targeted bacterial killing.
机译:复杂微生物种群中细菌的选择性调节是控制致病菌的关键。 CRISPR核酸酶可以编程为杀死细菌,但需要有效和广泛的范围递送系统来有效。这里,使用大肠杆菌和沙门氏菌肠道共培养系统,我们表明基于INCP RK2缀合系统的质粒可用作TevSPCAS9双核酸酶的递送载体。值得注意的是,与与分离共轭和CRISPR机械的反式系统相比,将来自大肠杆菌的CIS作用质粒从大肠杆菌中编码于大肠杆菌至肠溶酵母。在增强细胞对细胞接触的培养条件下,缀合速率与顺式作用质粒接近100%。针对单层或多重的SGRNA与非必需基因导致高的S.肠杀伤效率。我们的数据突出了CIS作用缀合质粒作为用于CRISPR核酸酶或其他用于靶向细菌杀伤的其他微生物改变剂的递送系统。

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