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Crystal structure and metal binding properties of the periplasmic iron component EfeM from Pseudomonas syringae EfeUOB/M iron-transport system

Mohan B. Rajasekaran; Rohanah Hussain; Giuliano Siligardi; Simon C. Andrews; Kimberly A. Watson
BioMetals · Vol. 35, Issue 3 · pp. 573-589 · 2022

Abstract

EfeUOB/M has been characterised in Pseudomonas syringae pathovar. syringae as a novel type of ferrous-iron transporter, consisting of an inner-membrane protein (EfeU Psy ) and three periplasmic proteins (EfeO Psy , EfeM Psy and EfeB Psy ). The role of an iron permease and peroxidase function has been identified for the EfeU and EfeB proteins, respectively, but the role of EfeO/M remains unclear. EfeM Psy is an ‘M75-only’ EfeO-like protein with a C-terminal peptidase-M75 domain (EfeO II /EfeM family). Herein, we report the 1.6 Å resolution crystal structure of EfeM Psy , the first structural report for an EfeM component of P. syringae pv . syringae . The structure possesses the bi-lobate architecture found in other bacterial periplasmic substrate/solute binding proteins. Metal binding studies, using SRCD and ICP-OES, reveal a preference of EfeM Psy for copper, iron and zinc. This work provides detailed knowledge of the structural scaffold, the metal site geometry, and the divalent metal binding potential of EfeM. This work provides crucial underpinning for a more detailed understanding of the role of EfeM/EfeO proteins and the peptidase-M75 domains in EfeUOB/M iron uptake systems in bacteria.

Bibliographic Information

JournalBioMetals
PublisherSpringer
Publication Date2022-06-01
Publication Year2022
Volume35
Issue3
Pages573-589
Document TypeJournal Article
Print ISSN0966-0844
eISSN1572-8773
DOI10.1007/s10534-022-00389-2

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NARA Access Coverage1988-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10534
Publisher PageOpen Publisher Page
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