Structural insights into RNA recognition by the Staphylococcus aureus exoribonuclease YhaM
Структурные сведения о распознавании РНК экзорибонуклеазой YhaM Staphylococcus aureus
2026-06-16
SCID: 54.1/bsjwe99n
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HD domain catalysisOB domain RNA recognitionStaphylococcus aureusYhaM exoribonucleasecryo-EM YhaM–RNA structures
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Abstract (AI)
Bacterial ribonucleases regulate gene expression in response to environmental stress and host interactions. In Staphylococcus aureus , the hibernation-promoting factor (Hpf) induces the formation of RNase R-resistant 100S ribosomes. We previously showed that the 3’-5’ exoribonuclease YhaM cleaves the hpf transcript, reducing Hpf synthesis and leading to ribosome degradation. No structure of any YhaM homolog bound to RNA is available, and biological investigations of YhaM remain limited. Here, we find that deletion of yhaM attenuates S. aureus virulence in a Galleria mellonella infection model. We further determined electron cryomicroscopy structures of YhaM–RNA complexes. YhaM adopts a hexameric complex arranged in a ring, with its N-terminal oligonucleotide/oligosaccharide-binding (OB) domains positioned on both sides of the ring while the catalytic histidine/aspartate-rich (HD) domain active sites are buried within the interior. The OB-1’’ domains recognize the hpf hairpin by the formation of complementary minor groove interactions. RNA binding by two YhaM OB domains is mediated through engagement of both the backbones and nucleobases of the RNA substrate, where stacking of aromatic residues and nucleobases likely contributes to substrate recognition. Structures of YhaM bound to a single-stranded RNA reveal how the 3’ ends of two RNAs are positioned within the HD domain poised for catalysis. Although six YhaM active sites are present, only two engage in RNA cleavage and further point to the importance of the remaining YhaM monomers as structural scaffolds for guiding RNA to the active site. In summary, these findings provide insights into the unique assembly of an understudied bacterial RNase.
Key Findings
1
Cryo-EM structures of YhaM–RNA complexes reveal YhaM forms a hexameric ring with OB domains on both sides and HD catalytic sites buried inside.
2
Deletion of yhaM attenuates Staphylococcus aureus virulence in a Galleria mellonella infection model.
3
OB-1’’ domains recognize the hpf hairpin via complementary minor-groove interactions.
4
RNA binding involves two YhaM OB domains engaging both RNA backbone and nucleobases, with aromatic residue–nucleobase stacking contributing to recognition.
5
Structures with single-stranded RNA show 3' ends of two RNAs positioned within the HD domain poised for catalysis; although six active sites exist, only two engage in cleavage, implicating other monomers as structural scaffolds guiding RNA to active sites.
Research Object
Staphylococcus aureus exoribonuclease YhaM in complex with RNA
Research Subject
Structural assembly and RNA-recognition mechanism of hexameric YhaM, including OB-domain–RNA interactions, positioning of 3' RNA ends in HD catalytic sites, active-site engagement asymmetry, and implications for RNA cleavage
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2026-06-16
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