EMD-38058

Single-particle
2.92 Å
EMD-38058 Deposition: 16/11/2023
Map released: 28/02/2024
Last modified: 16/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-38058

Structure of DNA-bound GajA dimer (focused refinement)

EMD-38058

Single-particle
2.92 Å
EMD-38058 Deposition: 16/11/2023
Map released: 28/02/2024
Last modified: 16/10/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Bacillus cereus VD045, synthetic construct
Sample: Binary complex of GajA with dsDNA
Fitted models: 8x51 (Avg. Q-score: 0.494)

Deposition Authors: Li J , Wang Z , Wang L
Structures and activation mechanism of the Gabija anti-phage system.
Li J , Cheng R , Wang Z , Yuan W, Xiao J , Zhao X, Du X, Xia S , Wang L , Zhu B , Wang L
(2024) Nature , 629 , 467 - 473
PUBMED: 38471529
DOI: doi:10.1038/s41586-024-07270-x
ISSN: 1476-4687
ASTM: NATUAS
Abstract:
Prokaryotes have evolved intricate innate immune systems against phage infection1-7. Gabija is a highly widespread prokaryotic defence system that consists of two components, GajA and GajB8. GajA functions as a DNA endonuclease that is inactive in the presence of ATP9. Here, to explore how the Gabija system is activated for anti-phage defence, we report its cryo-electron microscopy structures in five states, including apo GajA, GajA in complex with DNA, GajA bound by ATP, apo GajA-GajB, and GajA-GajB in complex with ATP and Mg2+. GajA is a rhombus-shaped tetramer with its ATPase domain clustered at the centre and the topoisomerase-primase (Toprim) domain located peripherally. ATP binding at the ATPase domain stabilizes the insertion region within the ATPase domain, keeping the Toprim domain in a closed state. Upon ATP depletion by phages, the Toprim domain opens to bind and cleave the DNA substrate. GajB, which docks on GajA, is activated by the cleaved DNA, ultimately leading to prokaryotic cell death. Our study presents a mechanistic landscape of Gabija activation.