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Conformational flexibility of EptA driven by an interdomain helix provides insights for enzyme–substrate recognition

Authors :
Anandhi Anandan
Nicholas W. Dunstan
Timothy M. Ryan
Haydyn D. T. Mertens
Katherine Y. L. Lim
Genevieve L. Evans
Charlene M. Kahler
Alice Vrielink
Source :
IUCrJ, Vol 8, Iss 5, Pp 732-746 (2021)
Publication Year :
2021
Publisher :
International Union of Crystallography, 2021.

Abstract

Many pathogenic gram-negative bacteria have developed mechanisms to increase resistance to cationic antimicrobial peptides by modifying the lipid A moiety. One modification is the addition of phosphoethanolamine to lipid A by the enzyme phosphoethanolamine transferase (EptA). Previously we reported the structure of EptA from Neisseria, revealing a two-domain architecture consisting of a periplasmic facing soluble domain and a transmembrane domain, linked together by a bridging helix. Here, the conformational flexibility of EptA in different detergent environments is probed by solution scattering and intrinsic fluorescence-quenching studies. The solution scattering studies reveal the enzyme in a more compact state with the two domains positioned close together in an n-dodecyl-β-d-maltoside micelle environment and an open extended structure in an n-dodecyl-phosphocholine micelle environment. Intrinsic fluorescence quenching studies localize the domain movements to the bridging helix. These results provide important insights into substrate binding and the molecular mechanism of endotoxin modification by EptA.

Details

Language :
English
ISSN :
20522525
Volume :
8
Issue :
5
Database :
Directory of Open Access Journals
Journal :
IUCrJ
Publication Type :
Academic Journal
Accession number :
edsdoj.bc165d2c27747119717a3d4bd3ba62d
Document Type :
article
Full Text :
https://doi.org/10.1107/S2052252521005613