Reaction participants Show >> << Hide
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Namehelp_outline
a guanylyl-uridine-RNA
Identifier
RHEA-COMP:19659
Reactive part
help_outline
- Name help_outline guanylyl-uridine residue Identifier CHEBI:231850 Charge -2 Formula C19H21N7O15P2 SMILEShelp_outline *P(OC[C@H]1O[C@@H](N2C=3N=C(NC(C3N=C2)=O)N)[C@@H]([C@@H]1OP(OC[C@H]4O[C@@H](N5C(NC(C=C5)=O)=O)[C@@H]([C@@H]4O*)O)(=O)[O-])O)(=O)[O-] 2D coordinates Mol file for the small molecule Search links Involved in 1 reaction(s) Find molecules that contain or resemble this structure Find proteins in UniProtKB for this molecule
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Namehelp_outline
a 3'-end 2',3'-cyclophospho-GMP-RNA
Identifier
RHEA-COMP:19658
Reactive part
help_outline
- Name help_outline 3'-end 2',3'-cyclophospho-GMP residue Identifier CHEBI:231849 Charge -2 Formula C10H10N5O9P2 SMILEShelp_outline *P(OC[C@H]1O[C@@H](N2C=3N=C(NC(C3N=C2)=O)N)[C@H]4[C@@H]1OP(O4)([O-])=O)(=O)[O-] 2D coordinates Mol file for the small molecule Search links Involved in 1 reaction(s) Find molecules that contain or resemble this structure Find proteins in UniProtKB for this molecule
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Namehelp_outline
a 5'-end dephospho-uridine-RNA
Identifier
RHEA-COMP:17356
Reactive part
help_outline
- Name help_outline 5'-dephospho-uridine residue Identifier CHEBI:173224 Charge 0 Formula C9H11N2O6 SMILEShelp_outline OC[C@H]1O[C@@H](N2C(=O)NC(C=C2)=O)[C@@H]([C@@H]1O*)O 2D coordinates Mol file for the small molecule Search links Involved in 3 reaction(s) Find molecules that contain or resemble this structure Find proteins in UniProtKB for this molecule
Cross-references
| RHEA:81323 | RHEA:81324 | RHEA:81325 | RHEA:81326 | |
|---|---|---|---|---|
| Reaction direction help_outline | undefined | left-to-right | right-to-left | bidirectional |
| UniProtKB help_outline |
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Related reactions help_outline
More general form(s) of this reaction
Publications
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Lysosomal endonuclease RNase T2 and PLD exonucleases cooperatively generate RNA ligands for TLR7 activation.
Berouti M., Lammens K., Heiss M., Hansbauer L., Bauernfried S., Stoeckl J., Pinci F., Piseddu I., Greulich W., Wang M., Jung C., Froehlich T., Carell T., Hopfner K.P., Hornung V.
Toll-like receptor 7 (TLR7) is essential for recognition of RNA viruses and initiation of antiviral immunity. TLR7 contains two ligand-binding pockets that recognize different RNA degradation products: pocket 1 recognizes guanosine, while pocket 2 coordinates pyrimidine-rich RNA fragments. We foun ... >> More
Toll-like receptor 7 (TLR7) is essential for recognition of RNA viruses and initiation of antiviral immunity. TLR7 contains two ligand-binding pockets that recognize different RNA degradation products: pocket 1 recognizes guanosine, while pocket 2 coordinates pyrimidine-rich RNA fragments. We found that the endonuclease RNase T2, along with 5' exonucleases PLD3 and PLD4, collaboratively generate the ligands for TLR7. Specifically, RNase T2 generated guanosine 2',3'-cyclic monophosphate-terminated RNA fragments. PLD exonuclease activity further released the terminal 2',3'-cyclic guanosine monophosphate (2',3'-cGMP) to engage pocket 1 and was also needed to generate RNA fragments for pocket 2. Loss-of-function studies in cell lines and primary cells confirmed the critical requirement for PLD activity. Biochemical and structural studies showed that PLD enzymes form homodimers with two ligand-binding sites important for activity. Previously identified disease-associated PLD mutants failed to form stable dimers. Together, our data provide a mechanistic basis for the detection of RNA fragments by TLR7. << Less
Immunity 57:1482-1496.e8(2024) [PubMed] [EuropePMC]
This publication is cited by 2 other entries.
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TLR8 Is a Sensor of RNase T2 Degradation Products.
Greulich W., Wagner M., Gaidt M.M., Stafford C., Cheng Y., Linder A., Carell T., Hornung V.
TLR8 is among the highest-expressed pattern-recognition receptors in the human myeloid compartment, yet its mode of action is poorly understood. TLR8 engages two distinct ligand binding sites to sense RNA degradation products, although it remains unclear how these ligands are formed in cellulo in ... >> More
TLR8 is among the highest-expressed pattern-recognition receptors in the human myeloid compartment, yet its mode of action is poorly understood. TLR8 engages two distinct ligand binding sites to sense RNA degradation products, although it remains unclear how these ligands are formed in cellulo in the context of complex RNA molecule sensing. Here, we identified the lysosomal endoribonuclease RNase T2 as a non-redundant upstream component of TLR8-dependent RNA recognition. RNase T2 activity is required for rendering complex single-stranded, exogenous RNA molecules detectable for TLR8. This is due to RNase T2's preferential cleavage of single-stranded RNA molecules between purine and uridine residues, which critically contributes to the supply of catabolic uridine and the generation of purine-2',3'-cyclophosphate-terminated oligoribonucleotides. Thus-generated molecules constitute agonistic ligands for the first and second binding pocket of TLR8. Together, these results establish the identity and origin of the RNA-derived molecular pattern sensed by TLR8. << Less
Cell 179:1264-1275.E13(2019) [PubMed] [EuropePMC]
This publication is cited by 1 other entry.