Lipopeptide antibiotics disrupt interactions of undecaprenyl phosphate with UptA

Symplectic ID
2036169
Source
Ora (Hyrax)
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1
Last Synced with Symplectic
Sunday, 23 August, 2026 - 05:09
DOI
10.1073/pnas.2408315121
Publication Date
Thursday, 3 October, 2024
Keywords
peptidoglycan
undecaprenyl phosphate transporter A
UptA
native mass spectrometry
Authors
Oluwole, AO
Kalmankar, NV
Guida, M
Bennett, JL
Poce, G
Bolla, JR
Robinson, CV
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Abstract
The peptidoglycan pathway represents one of the most successful antibacterial targets with the last critical step being the flipping of carrier lipid, undecaprenyl phosphate (C<sub>55</sub>-P), across the membrane to reenter the pathway. This translocation of C<sub>55</sub>-P is facilitated by DedA and DUF368 domain-containing family membrane proteins via unknown mechanisms. Here, we employ native mass spectrometry to investigate the interactions of UptA, a member of the DedA family of membrane protein from<em> Bacillus subtilis</em>, with C<sub>55</sub>-P, membrane phospholipids, and cell wall-targeting antibiotics. Our results show that UptA, expressed and purified in <em>Escherichia coli</em>, forms monomer-dimer equilibria, and binds to C<sub>55</sub>-P in a pH-dependent fashion. Specifically, we show that UptA interacts more favorably with C<sub>55</sub>-P over shorter-chain analogs and membrane phospholipids. Moreover, we demonstrate that lipopeptide antibiotics, amphomycin and aspartocin D, can directly inhibit UptA function by out-competing the substrate for the protein binding, in addition to their propensity to form complex with free C<sub>55</sub>-P. Overall, this study shows that UptA-mediated translocation of C<sub>55</sub>-P is potentially mediated by pH and anionic phospholipids and provides insights for future development of antibiotics targeting carrier lipid recycling.
Publisher
National Academy of Sciences
Place of publication
United States
ISSN
0027-8424
Journal Title
Proceedings of the National Academy of Sciences
eISSN
1091-6490
Volume
121
Issue
41
ID at Source
uuid_e547b400-0df5-4716-b626-13efa1a78e85
Publication Status
Published
Open access
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chem0596,ptch0342,ptch0496,ptch0428