Abstract
Argonaute proteins are the central effectors of RNA-guided RNA silencing pathways in eukaryotes, playing crucial roles in gene repression and defense against viruses and transposons. Eukaryotic Argonautes are subdivided into two clades: AGOs generally facilitate miRNA- or siRNA-mediated silencing, while PIWIs generally facilitate piRNA-mediated silencing. It is currently unclear when and how Argonaute-based RNA silencing mechanisms arose and diverged during the emergence and early evolution of eukaryotes. Here, we show that in Asgard archaea, the closest prokaryotic relatives of eukaryotes, an evolutionary expansion of Argonaute proteins took place. In particular, a deep-branching PIWI protein (HrAgo1) encoded by the genome of the Lokiarchaeon ‘Candidatus Harpocratesius repetitus’ shares a common origin with eukaryotic PIWI proteins. Contrasting known prokaryotic Argonautes that use single-stranded DNA as guides and/or targets, HrAgo1 mediates RNA-guided RNA cleavage, and facilitates gene silencing when expressed in human cells and supplied with miRNA precursors. A cryo-EM structure of HrAgo1, combined with quantitative single-molecule experiments, reveals that the protein displays structural features and target-binding modes that are a mix of those of eukaryotic AGO and PIWI proteins. Thus, this deep-branching archaeal PIWI may have retained an ancestral molecular architecture that preceded the functional and mechanistic divergence of eukaryotic AGOs and PIWIs.
| Original language | English |
|---|---|
| Article number | 5499 |
| Number of pages | 14 |
| Journal | Nature Communications |
| Volume | 15 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 29 Jun 2024 |
Bibliographical note
Publisher Copyright:© The Author(s) 2024.
Funding
HCT116 knockout cells were a kind gift from Prof. David R. Corey (UT Southwestern, USA). F.W. thanks Claudio Nunes-Alves for critical comments on the paper, Woodward Fischer and Diaoqiong Zheng for valuable discussions, and Danxi Cui for technical support. D.C.S. and P.B.U. thank members of the Swarts lab for valuable discussions and technical support.\u00A0C.B. and C.J. thank Martin Depken and Hidde Offerhaus for valuable discussions on the data analysis. F.W. was supported by National Natural Science Foundation of China grant (32370003). C.J. was supported by ERC Consolidator grant (819299) of the European Research Council and Frontier 10-10 (Ewha Womans University). D.C.S. was supported by grants from the European Research Council (ERC-2020-STG 948783) and the Dutch Research\u00A0Council (016.Veni.192.072). P.B.U. was supported by Consejo Nacional de Ciencia y Technology (CVU No. 682509). K.K. was supported by an EMBO Postdoctoral Fellowship (ALTF 76-2022).\u00A0T.J.G.E. was supported by ERC Consolidator grant (817834) of the European Research Council, Vici grant (VI.C.192.016) of the Dutch Research Council and Life grant (96725) of the Volkswagen Foundation. HCT116 knockout cells were a kind gift from Prof. David R. Corey (UT Southwestern, USA). F.W. thanks Claudio Nunes-Alves for critical comments on the paper, Woodward Fischer and Diaoqiong Zheng for valuable discussions, and Danxi Cui for technical support. D.C.S. and P.B.U. thank members of the Swarts lab for valuable discussions and technical support. C.B. and C.J. thank Martin Depken and Hidde Offerhaus for valuable discussions on the data analysis. F.W. was supported by National Natural Science Foundation of China grant (32370003). C.J. was supported by ERC Consolidator grant (819299) of the European Research Council and Frontier 10-10 (Ewha Womans University). D.C.S. was supported by grants from the European Research Council (ERC-2020-STG 948783) and the Dutch Research Council (016.Veni.192.072). P.B.U. was supported by Consejo Nacional de Ciencia y Technology (CVU No. 682509). K.K. was supported by an EMBO Postdoctoral Fellowship (ALTF 76-2022). T.J.G.E. was supported by ERC Consolidator grant (817834) of the European Research Council, Vici grant (VI.C.192.016) of the Dutch Research Council and Life grant (96725) of the Volkswagen Foundation.
| Funders | Funder number |
|---|---|
| Consejo Nacional de Humanidades, Ciencias y Tecnologías | |
| Volkswagen Foundation | |
| European Research Council | 819299 |
| European Molecular Biology Organization | 817834, VI.C.192.016, ALTF 76-2022 |
| Ewha Womans University | ERC-2020-STG 948783 |
| Nederlandse Organisatie voor Wetenschappelijk Onderzoek | 96725 |
| National Natural Science Foundation of China | 32370003 |
| CVU | 682509 |
Keywords
- Alignment
- Annotation
- Bacterial
- Binding
- Classification
- Consistent
- Crystal-structure
- Evolution
- Interference
- Origin
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