Bacterial Argonaute nucleases reveal different modes of DNA targeting in vitro and in vivo
Creators
Abstract
Prokaryotic Argonaute proteins (pAgos) are homologs of eukaryotic Argonautes (eAgos) and are also thought to play a role in cell defense against invaders. However, pAgos are much more diverse than eAgos and little is known about their functional activities and target specificities in vivo. Here, we describe five pAgos from mesophilic bacteria that act as programmable DNA endonucleases and analyze their ability to target chromosomal and invader DNA. In vitro, the analyzed proteins use small guide DNAs for precise cleavage of single-stranded DNA at a wide range of temperatures. Upon their expression in Escherichia coli, all five pAgos are loaded with small DNAs preferentially produced from plasmids and chromosomal regions of replication termination. One of the tested pAgos, EmaAgo from Exiguobacterium marinum, can induce DNA interference between homologous sequences resulting in targeted processing of multicopy plasmid and genomic elements. EmaAgo also protects bacteria from bacteriophage infection, by loading phage-derived guide DNAs and decreasing phage DNA content and phage titers. Thus, the ability of pAgos to target multicopy elements may be crucial for their protective function. The wide spectrum of pAgo activities suggests that they may have diverse functions in vivo and paves the way for their use in biotechnology.
Additional Information
© The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com. We thank Dr David Leach and Dr Gerry Smith for insightful discussions, Dr Anna Olina for help in preparation of smDNA libaries. FUNDING. Russian Ministry of Science and Higher Education [agreement 075-15-2021-1062, analysis of biochemical activities of DloAgo and EmaAgo], Russian Science Foundation [grant 20-74-10127 to A.A., analysis of in vitro specificities of CepAgo, MaeAgo and CmiAgo; grant 19-14-00359 to D.E., analysis of genomic DNA targeting by pAgos]. Funding for open access charge: Russian Ministry of Science and Higher Education, Russian Science Foundation. The authors wish it to be known that, in their opinion, the first five authors should be regarded as Joint First Authors. DATA AVAILABILITY. The smDNA and genomic DNA sequencing datasets generated in this study are available from the Sequence Read Archive (SRA) database under accession numbers PRJNA827032 and PRJNA827167. The code used for data analysis is available at the GitHub repository at https://github.com/AlekseiAgapov/5pAgos and in Zenodo at https://doi.org/10.5281/zenodo.7804980. The genomic sequence of phage P1 used in the experiments is available from GenBank under accession number OP279344. All primary data are available from the corresponding author upon request. Conflict of interest statement. None declared.Attached Files
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Additional details
Identifiers
- PMCID
- PMC10250240
- Eprint ID
- 121307
- Resolver ID
- CaltechAUTHORS:20230502-385708500.1
Related works
Funding
- Ministry of Science and Higher Education (Russia)
- 075-15-2021-1062
- Russian Science Foundation
- 20-74-10127
- Russian Science Foundation
- 19-14-00359
Dates
- Created
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2023-05-04Created from EPrint's datestamp field
- Updated
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2023-06-15Created from EPrint's last_modified field