Structural basis of lipopolysaccharide extraction by the LptB<sub>2</sub>FGC complex.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30894744.
- Also identified by DOI 10.1038/s41586-019-1025-6 and PMC identifier 6532066.
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Abstract
In Gram-negative bacteria, lipopolysaccharide is essential for outer membrane formation and antibiotic resistance. The seven lipopolysaccharide transport (Lpt) proteins A-G move lipopolysaccharide from the inner to the outer membrane. The ATP-binding cassette transporter LptB<sub>2</sub>FG, which tightly associates with LptC, extracts lipopolysaccharide out of the inner membrane. The mechanism of the LptB<sub>2</sub>FG-LptC complex (LptB<sub>2</sub>FGC) and the role of LptC in lipopolysaccharide transport are poorly understood. Here we characterize the structures of LptB<sub>2</sub>FG and LptB<sub>2</sub>FGC in nucleotide-free and vanadate-trapped states, using single-particle cryo-electron microscopy. These structures resolve the bound lipopolysaccharide, reveal transporter-lipopolysaccharide interactions with side-chain details and uncover how the capture and extrusion of lipopolysaccharide are coupled to conformational rearrangements of LptB<sub>2</sub>FGC. LptC inserts its transmembrane helix between the two transmembrane domains of LptB<sub>2</sub>FG, which represents a previously unknown regulatory mechanism for ATP-binding cassette transporters. Our results suggest a role for LptC in achieving efficient lipopolysaccharide transport, by coordinating the action of LptB<sub>2</sub>FG in the inner membrane and Lpt protein interactions in the periplasm.
Medical subject headings
- Cryoelectron Microscopy
- Escherichia coli
- Escherichia coli Proteins
- Lipopolysaccharides
- Membrane Proteins
- Multiprotein Complexes