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8WP2

MapSPARTA tetramer bound with guide-target

Summary for 8WP2
Entry DOI10.2210/pdb8wp2/pdb
EMDB information37708
DescriptorPiwi domain-containing protein, TIR domain-containing protein, RNA (5'-R(P*UP*GP*AP*CP*GP*GP*CP*UP*CP*UP*AP*AP*UP*CP*UP*AP*UP*UP*AP*GP*U)-3'), ... (4 entities in total)
Functional Keywordssparta, ago, tir, rna binding protein-dna-rna complex, rna binding protein/dna/rna
Biological sourceMaribacter polysiphoniae
More
Total number of polymer chains16
Total formula weight502755.81
Authors
Huang, P.P.,Li, Z.X.,Guo, L.J.,Xiao, Y.B.,Chen, M.R. (deposition date: 2023-10-08, release date: 2024-12-11, Last modification date: 2026-07-29)
Primary citationZhao, H.,Huang, P.,Guo, L.,Jiang, X.,Li, Z.,Tao, B.,Lu, M.,Qi, L.,Zhang, L.,Xiao, Y.,Chen, M.
Structural and functional characterization of SPARTA system.
Biochem.Biophys.Res.Commun., 825:153972-153972, 2026
Cited by
PubMed Abstract: Short prokaryotic Argonaute associated with TIR-APAZ (SPARTA) is a bacterial defense system that oligomerizes to activate the TIR domain, depleting NAD upon guide-mediated target DNA recognition. Previous studies have shown a marked activity divergence between thermophilic Crenotalea thermophila SPARTA (CrtSPARTA) and Maribacter polysiphoniae SPARTA (MapSPARTA); however, the underlying mechanism remains unclear. Here, through biochemical and structural analysis, we found that compared with the relatively rigid CrtSPARTA, MapSPARTA exhibits much more flexibility in its TIR domain, which flips during the formation of active tetramers. Interestingly, we found that the activity of CrtSPARTA, but not MapSPARTA, could be significantly enhanced when we weakened the interaction between the MID and TIR domains by introducing mutations at the interface, suggesting that the MID-TIR interaction restricts the release of CrtTIR and thus the activation of CrtSPARTA. Following guide-target recognition, this flexibility-induced activation can be further promoted by higher temperatures within the physiological range or Ca, together suggesting that the restriction of TIR by the MID-TIR interaction may be a strategy to prevent auto-activation of thermophilic CrtSPARTA. Meanwhile, we also found that tRNA fragments can serve as guide RNAs for SPARTA activation, which probably reveals the origin of the RNA guide for prokaryotic Argonaute. This also suggests the possibility that SPARTA may function cooperatively with other defense systems involving a tRNA endonuclease to efficiently respond to viral infection.
PubMed: 42172904
DOI: 10.1016/j.bbrc.2026.153972
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.3 Å)
Structure validation

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