ArticleNucleic acids research2024
Structural and mechanistic insights into a mesophilic prokaryotic Argonaute.
Article in Nucleic acids research, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Distinct Cleavage Trajectories Mediated by DNA and RNA Substrate in Argonaute From Methanocaldococcus Fervens.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Mechanism of the long-B prokaryotic Argonaute-mediated nuclease activation in bacterial immunity.Nucleic acids research · 2026Article
- Article
- Structural insights into C-terminus-mediated RNA target cleavage by a mesophilic prokaryotic argonaute.Nature communications · 2026Article
- A Programmable Eukaryotic Argonaute Nuclease with Dual DNA and RNA Cleavage Activity from Thermophilic FungusSmall science · 2026Article
- Specificity of DNA targeting by RNA-guided pAgo nucleases.Nucleic acids research · 2026Article
- Activation of the SPARDA defense system by filament assembly using a beta-relay signaling mechanism widespread in prokaryotic Argonautes.Cell research · 2025Article
- A Mesophilic Argonaute fromBiomolecules · 2025Article
- Random guide-independent DNA cleavage from the Argonaute of Exiguobacterium sp. AB2.BMC microbiology · 2025Article
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Authors and funding
12 authors.
Funding
Abstract
Argonaute (Ago) proteins are programmable nucleases found in all domains of life, playing a crucial role in biological processes like DNA/RNA interference and gene regulation. Mesophilic prokaryotic Agos (pAgos) have gained increasing research interest due to their broad range of potential applications, yet their molecular mechanisms remain poorly understood. Here, we present seven cryo-electron microscopy structures of Kurthia massiliensis Ago (KmAgo) in various states. These structures encompass the steps of apo-form, guide binding, target recognition, cleavage, and release, revealing that KmAgo employs a unique DDD catalytic triad, instead of a DEDD tetrad, for DNA target cleavage under 5'P-DNA guide conditions. Notably, the last catalytic residue, D713, is positioned outside the catalytic pocket in the absence of guide. After guide binding, D713 enters the catalytic pocket. In contrast, the corresponding catalytic residue in other Agos has been consistently located in the catalytic pocket. Moreover, we identified several sites exhibiting enhanced catalytic activity through alanine mutagenesis. These sites have the potential to serve as engineering targets for augmenting the catalytic efficiency of KmAgo. This structural analysis of KmAgo advances the understanding of the diversity of molecular mechanisms by Agos, offering insights for developing and optimizing mesophilic pAgos-based programmable DNA and RNA manipulation tools.
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