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9BF1

Structure of apo-state V. cholerae DdmD

Summary for 9BF1
Entry DOI10.2210/pdb9bf1/pdb
EMDB information44486
DescriptorHelicase/UvrB N-terminal domain-containing protein (1 entity in total)
Functional Keywordsvibrio cholerae, bacteria, anti-plasmids, defense system, dna defense modules(ddm), ddmde, immune system
Biological sourceVibrio cholerae
Total number of polymer chains2
Total formula weight272310.66
Authors
Shen, Z.F.,Yang, X.Y.,Fu, T.M. (deposition date: 2024-04-16, release date: 2024-08-21, Last modification date: 2024-10-02)
Primary citationYang, X.Y.,Shen, Z.,Wang, C.,Nakanishi, K.,Fu, T.M.
DdmDE eliminates plasmid invasion by DNA-guided DNA targeting.
Cell, 187:5253-5266.e16, 2024
Cited by
PubMed Abstract: Horizontal gene transfer is a key driver of bacterial evolution, but it also presents severe risks to bacteria by introducing invasive mobile genetic elements. To counter these threats, bacteria have developed various defense systems, including prokaryotic Argonautes (pAgos) and the DNA defense module DdmDE system. Through biochemical analysis, structural determination, and in vivo plasmid clearance assays, we elucidate the assembly and activation mechanisms of DdmDE, which eliminates small, multicopy plasmids. We demonstrate that DdmE, a pAgo-like protein, acts as a catalytically inactive, DNA-guided, DNA-targeting defense module. In the presence of guide DNA, DdmE targets plasmids and recruits a dimeric DdmD, which contains nuclease and helicase domains. Upon binding to DNA substrates, DdmD transitions from an autoinhibited dimer to an active monomer, which then translocates along and cleaves the plasmids. Together, our findings reveal the intricate mechanisms underlying DdmDE-mediated plasmid clearance, offering fundamental insights into bacterial defense systems against plasmid invasions.
PubMed: 39173632
DOI: 10.1016/j.cell.2024.07.028
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.1 Å)
Structure validation

226707

數據於2024-10-30公開中

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