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Structural basis of inhibition of lipid-linked oligosaccharide flippase PglK by a conformational nanobody
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 3893681
Author(s) Perez, Camilo; Köhler, Martin; Janser, Daniel; Pardon, Els; Steyaert, Jan; Zenobi, Renato; Locher, Kaspar P.
Author(s) at UniBasel Perez, Camilo
Year 2017
Title Structural basis of inhibition of lipid-linked oligosaccharide flippase PglK by a conformational nanobody
Journal Scientific Reports
Volume 7
Pages / Article-Number 46641
Mesh terms ATP-Binding Cassette Transporters, metabolism; Antibodies, Bacterial, chemistry; Bacterial Proteins, metabolism; Campylobacter jejuni, metabolism; Protein Multimerization; Protein Structure, Quaternary; Single-Domain Antibodies, chemistry
Abstract PglK is an ABC transporter that flips a lipid-linked oligosaccharide (LLO) that serves as a donor in protein N-glycosylation. Previous structures revealed two inward-facing conformations, both with very large separations of the nucleotide binding domains (NBDs), and a closed, ADP-bound state that featured an occluded cavity. To investigate additional states, we developed conformation-sensitive, single-domain camelid nanobodies (Nb) and studied their effect on PglK activity. Biochemical, structural, and mass spectrometric analyses revealed that one inhibitory Nb binds as a single copy to homodimeric PglK. The co-crystal structure of this Nb and ADP-bound PglK revealed a new, narrowly inward-open conformation. Rather than inducing asymmetry in the PglK homodimer, the binding of one Nb results in steric constraints that prevent a second Nb to access the symmetry-related site in PglK. The Nb performed its inhibitory role by a "sticky-doorstop" mechanism, where inhibition of ATP hydrolysis and LLO flipping activity occurs due to impaired closing of the NBD interface, which prevents PglK from converting to an outward-open conformation. This inhibitory mode suggests tight conformational coupling between the ATPase sites, which may apply to other ABC transporters.
Publisher Nature Publishing Group
ISSN/ISBN 2045-2322
edoc-URL http://edoc.unibas.ch/56039/
Full Text on edoc No
Digital Object Identifier DOI 10.1038/srep46641
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/28422165
ISI-Number WOS:000399720800003
Document type (ISI) Journal Article
 
   

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