eLife· 2026Q1
Genome-wide synthetic lethality screen of Bam complex-associated genes in Escherichia coli
- 1citations
- Q1SCImago
- 2026year
Short summary
A genome-wide screen in E. coli reveals hundreds of synthetic-lethal interactions with genes encoding non-essential Bam complex-associated proteins, identifying new dependencies between outer membrane protein biogenesis and other cellular processes.
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Key points
- Hundreds of synthetic-lethal interactions were identified with knockout strains of non-essential Bam-associated genes (BamB, BamC, BamE, SurA, Skp, DegP).
- Bam complex activity is affected by changes in outer membrane lipid composition.
- Enterobacterial common antigen is essential in the absence of the chaperone SurA.
- Genes for peptidoglycan synthesis are synthetically lethal with genes encoding Bam accessory lipoproteins.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Biogenesis of the bacterial outer membrane is key to bacterial survival and antibiotic resistance. Central to this is the β-barrel assembly machine (Bam) complex and its associated chaperones, which are responsible for transport, folding and insertion of outer membrane proteins (OMPs). The Escherichia coli Bam complex is composed of two essential subunits, BamA and BamD, and three non-essential accessory lipoproteins, BamB, BamC and BamE. Optimal Bam function is further dependent on the non-essential periplasmic chaperones DegP, Skp and SurA. Despite intensive study, the specific function of these non-essential Bam-associated proteins is not fully understood. Here, we analysed Δ bamB , Δ bamC , Δ bamE , Δ surA , Δ skp and Δ degP knockout strains by phenotypic screening, conservation analysis and high-throughput genetics. We identify hundreds of synthetic-lethal interactions and reveal that Bam complex activity is impacted by changes in outer membrane lipid composition and that enterobacterial common antigen is essential in the absence of the chaperone SurA. We also show genes responsible for synthesis of peptidoglycan are synthetically-lethal with Bam accessory lipoprotein encoding genes. Together, our data indicates potential mechanisms for coordination of OMP biogenesis with other cellular growth processes such as LPS and peptidoglycan biogenesis.
The authors' abstract, as published at the source. eLife, 2026 · DOI ↗
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Field: Genetics (Biochemistry, Genetics and Molecular Biology)
GeneticsBiochemistry, Genetics and Molecular Biology