Prokaryotic Schlafen proteins cleave tRNAs during type III CRISPR immunity
Пропариотические белки Schlafen расщепляют тРНК в ходе иммунитета CRISPR типа III
2026-07-02
SCID: 54.1/7jzbumv8
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CRISPR-associated Schlafen (Cash)Cryo-electron microscopy structurecA4 (cyclic tetra-adenylate) activationtRNA cleavage (T-loop)type III CRISPR immunity
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Abstract (AI)
Schlafen nucleases restrict viral infection in mammals by cleaving self RNAs, however, their function and mechanism in prokaryotic immunity is unknown. Here, we uncover CRISPR-associated Schlafen (Cash) proteins containing a Schlafen domain fused to Csx15, an uncharacterized member of Rossmann-like nucleotide-binding sensors. Cash is activated by cyclic tetra-adenylate (cA₄) produced during type III CRISPR interference and induces cell toxicity by cleaving tRNAs, primarily in the T-loop. Cryo-electron microscopy structures of Chloroflexi bacterium Cash reveal an inactive dodecamer, the formation of a filament upon cA₄ binding to align catalytic interfaces, and the molecular basis of substrate recognition and cleavage in a tRNA–bound complex. We identify numerous families of prokaryotic Schlafen proteins associated with diverse antiviral defense systems and characterized by unique sensor domains. This work highlights tRNA depletion by Schlafen nucleases as an evolutionary recurring antiviral strategy and reveals mechanistic differences between Cash and human Schlafen members. Schlafen nucleases restrict viral infection in mammals by cleaving self RNAs. Here, the authors identify bacterial Schlafen nucleases as components of anti-phage type III CRISPR systems that restrict viral infection through tRNA depletion.
Key Findings
1
Activated Cash induces cell toxicity by cleaving tRNAs, primarily at the T-loop.
2
CRISPR-associated Schlafen (Cash) proteins are Schlafen-domain proteins fused to Csx15, a Rossmann-like nucleotide-binding sensor.
3
Cash is activated by cyclic tetra-adenylate (cA4) produced during type III CRISPR interference.
4
Cryo-EM structures of Chloroflexi Cash show an inactive dodecamer that forms a filament upon cA4 binding to align catalytic interfaces.
5
Numerous families of prokaryotic Schlafen proteins are associated with diverse antiviral defense systems and have unique sensor domains.
6
Structural tRNA–bound complex reveals the molecular basis of substrate recognition and cleavage by Cash.
7
tRNA depletion by Schlafen nucleases is an evolutionarily recurring antiviral strategy and Cash mechanisms differ mechanistically from human Schlafen proteins.
Research Object
CRISPR-associated Schlafen (Cash) proteins from prokaryotes
Research Subject
cA4-activated tRNA cleavage activity, substrate recognition, oligomerization (inactive dodecamer to active filament) and mechanism by which Cash proteins mediate tRNA depletion during type III CRISPR immunity
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2026-07-02
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