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With the increasing resistance of many Gram-negative bacteria to existing classes of antibiotics, identifying new paradigms in antimicrobial discovery is an important research priority. Of special interest here are the proteins required for the biogenesis of the symmetric Gram-negative bacterial out...
ORGANISM(S): Escherichia Coli (ncbitaxon:562) 
2020-02-04 | MSV000084897 | MassIVE
With the increasing resistance of many Gram-negative bacteria to existing classes of antibiotics, identifying new paradigms in antimicrobial discovery is an important research priority. Of special interest here are the proteins required for the biogenesis of the symmetric Gram-negative bacterial out...
ORGANISM(S): Escherichia coli 
2019-01-23 | PXD010988 | Pride
Gram-negative bacteria are a major cause of antibiotic-resistant infections due to their highly impermeable cell envelope which contains lipopolysaccharide (LPS) and prevents antibiotics from entering the cell. LPS biogenesis relies on the activity of the essential LPS transport machinery (Lpt), whi...
ORGANISM(S): Escherichia coli str. K-12 substr. MG1655 
2026-09-10 | GSE271942 | GEO
We investigated the conformational dynamics of the LPS translocon LptDE was using hydrogen-deuterium exchange mass spectrometry. We evaluated the conformational changes of LptDE upon binding of LPS, Re-LPS (an LPS substructure), thanatin, and the membrane lipid POPG. Our data reveal that LPS induces...
ORGANISM(S): Klebsiella pneumoniae 
2020-11-16 | PXD021743 | Pride
Time-resolved transcriptomic analysis reveals envelope stress–mediated adaptation of Escherichia coli to the LPS transport inhibitor thanatin
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