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Title: | Continuous multiplexed phage genome editing using recombitrons |
Authors: | Fishman, Chloe B. Crawford, Kate D. Bhattarai-Kline, Santi POOLA, DARSHINI Zhang, Karen Gonzalez-Delgado, Alejandro Rojas-Montero, Matias Shipman, Seth L. Dept. of Biology |
Keywords: | Phage biology Synthetic biology 2024 2024-SEP-WEEK3 TOC-SEP-2024 |
Issue Date: | Sep-2023 |
Publisher: | Springer Nature |
Citation: | Nature Biotechnology. |
Abstract: | Bacteriophage genome editing can enhance the efficacy of phages to eliminate pathogenic bacteria in patients and in the environment. However, current methods for editing phage genomes require laborious screening, counterselection or in vitro construction of modified genomes. Here, we present a scalable approach that uses modified bacterial retrons called recombitrons to generate recombineering donor DNA paired with single-stranded binding and annealing proteins for integration into phage genomes. This system can efficiently create genome modifications in multiple phages without the need for counterselection. The approach also supports larger insertions and deletions, which can be combined with simultaneous counterselection for >99% efficiency. Moreover, we show that the process is continuous, with more edits accumulating the longer the phage is cultured with the host, and multiplexable. We install up to five distinct mutations on a single lambda phage genome without counterselection in only a few hours of hands-on time and identify a residue-level epistatic interaction in the T7 gp17 tail fiber. |
URI: | https://doi.org/10.1038/s41587-024-02370-5 http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9083 |
ISSN: | 1087-0156 1546-1696 |
Appears in Collections: | JOURNAL ARTICLES |
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