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Phage anti-CBASS protein simultaneously sequesters cyclic trinucleotides and dinucleotides.

Authors :
Cao, Xueli
Xiao, Yu
Huiting, Erin
Cao, Xujun
Li, Dong
Ren, Jie
Fedorova, Iana
Wang, Hao
Guan, Linlin
Wang, Yu
Li, Lingyin
Bondy-Denomy, Joseph
Feng, Yue
Source :
Molecular Cell. Jan2024, Vol. 84 Issue 2, p375-375. 1p.
Publication Year :
2024

Abstract

Cyclic-oligonucleotide-based anti-phage signaling system (CBASS) is a common immune system that uses cyclic oligonucleotide signals to limit phage replication. In turn, phages encode anti-CBASS (Acb) proteins such as Acb2, which can sequester some cyclic dinucleotides (CDNs) and limit downstream effector activation. Here, we identified that Acb2 sequesters many CDNs produced by CBASS systems and inhibits stimulator of interferon genes (STING) activity in human cells. Surprisingly, the Acb2 hexamer also binds with high affinity to CBASS cyclic trinucleotides (CTNs) 3′3′3′-cyclic AMP-AMP-AMP and 3′3′3′-cAAG at a distinct site from CDNs. One Acb2 hexamer can simultaneously bind two CTNs and three CDNs. Phage-encoded Acb2 provides protection from type III-C CBASS that uses cA 3 signaling molecules. Moreover, phylogenetic analysis of >2,000 Acb2 homologs encoded by diverse phages and prophages revealed that most are expected to bind both CTNs and CDNs. Altogether, Acb2 sequesters nearly all known CBASS signaling molecules through two distinct binding pockets and therefore serves as a broad-spectrum inhibitor of cGAS-based immunity. [Display omitted] • Acb2 binds to multiple cyclic dinucleotides (CDNs) and inhibits STING activity in human cells • Acb2 binds with high affinity to CBASS cyclic trinucleotides (CTNs) at a distinct site from CDNs • One Acb2 hexamer simultaneously binds two CTNs and three CDNs • Cyclic nucleotide binding spectra are different among Acb2 homologs Cao et al. report that phage anti-CBASS 2 (Acb2) can simultaneously sequester cyclic dinucleotides and trinucleotides in different binding pockets, thereby serving as a broad-spectrum inhibitor of cGAS-based immunity. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10972765
Volume :
84
Issue :
2
Database :
Academic Search Index
Journal :
Molecular Cell
Publication Type :
Academic Journal
Accession number :
174759599
Full Text :
https://doi.org/10.1016/j.molcel.2023.11.026