The Lipid A 1-Phosphatase, LpxE, Functionally Connects Multiple Layers of Bacterial Envelope Biogenesis.

dc.contributor.author

Zhao, Jinshi

dc.contributor.author

An, Jinsu

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Hwang, Dohyeon

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Wu, Qinglin

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Wang, Su

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Gillespie, Robert A

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Yang, Eun Gyeong

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Guan, Ziqiang

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Zhou, Pei

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Chung, Hak Suk

dc.contributor.editor

Stephen Trent, M

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Salama, Nina R

dc.date.accessioned

2019-07-01T13:32:47Z

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2019-07-01T13:32:47Z

dc.date.issued

2019-06-18

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2019-07-01T13:32:43Z

dc.description.abstract

Although distinct lipid phosphatases are thought to be required for processing lipid A (component of the outer leaflet of the outer membrane), glycerophospholipid (component of the inner membrane and the inner leaflet of the outer membrane), and undecaprenyl pyrophosphate (C55-PP; precursors of peptidoglycan and O antigens of lipopolysaccharide) in Gram-negative bacteria, we report that the lipid A 1-phosphatases, LpxEs, functionally connect multiple layers of cell envelope biogenesis in Gram-negative bacteria. We found that Aquifex aeolicus LpxE structurally resembles YodM in Bacillus subtilis, a phosphatase for phosphatidylglycerol phosphate (PGP) with a weak in vitro activity on C55-PP, and rescues Escherichia coli deficient in PGP and C55-PP phosphatase activities; deletion of lpxE in Francisella novicida reduces the MIC value of bacitracin, indicating a significant contribution of LpxE to the native bacterial C55-PP phosphatase activity. Suppression of plasmid-borne lpxE in F. novicida deficient in chromosomally encoded C55-PP phosphatase activities results in cell enlargement, loss of O-antigen repeats of lipopolysaccharide, and ultimately cell death. These discoveries implicate LpxE as the first example of a multifunctional regulatory enzyme that orchestrates lipid A modification, O-antigen production, and peptidoglycan biogenesis to remodel multiple layers of the Gram-negative bacterial envelope.IMPORTANCE Dephosphorylation of the lipid A 1-phosphate by LpxE in Gram-negative bacteria plays important roles in antibiotic resistance, bacterial virulence, and modulation of the host immune system. Our results demonstrate that in addition to removing the 1-phosphate from lipid A, LpxEs also dephosphorylate undecaprenyl pyrophosphate, an important metabolite for the synthesis of the essential envelope components, peptidoglycan and O-antigen. Therefore, LpxEs participate in multiple layers of biogenesis of the Gram-negative bacterial envelope and increase antibiotic resistance. This discovery marks an important step toward understanding the regulation and biogenesis of the Gram-negative bacterial envelope.

dc.identifier

mBio.00886-19

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2150-7511

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2150-7511

dc.identifier.uri

https://hdl.handle.net/10161/19052

dc.language

eng

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American Society for Microbiology

dc.relation.ispartof

mBio

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10.1128/mbio.00886-19

dc.subject

bacterial cell envelope biogenesis

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lipid A 1-phosphate phosphatase

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phosphatidylglycerol phosphate phosphatase

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type 2 phosphatidic acid phosphatase (PAP2) superfamily

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undecaprenyl pyrophosphate phosphatase

dc.title

The Lipid A 1-Phosphatase, LpxE, Functionally Connects Multiple Layers of Bacterial Envelope Biogenesis.

dc.type

Journal article

duke.contributor.orcid

Guan, Ziqiang|0000-0002-8082-3423

duke.contributor.orcid

Zhou, Pei|0000-0002-7823-3416

pubs.issue

3

pubs.organisational-group

School of Medicine

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Duke

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Chemistry

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Trinity College of Arts & Sciences

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Duke Cancer Institute

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Institutes and Centers

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Biochemistry

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Basic Science Departments

pubs.publication-status

Published

pubs.volume

10

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