Structural basis of iron piracy by human gut <i>Bacteroides</i>

A Augustinas Silale (Biosciences Institute, Newcastle University, Faculty of Medical Sciences) Y Yung Li Soo (Biosciences Institute, Newcastle University, Faculty of Medical Sciences) H Hannah Mark (Biosciences Institute, Newcastle University, Faculty of Medical Sciences) R Rachel N. Motz (Department of Chemistry) A Arnaud Basle E Elizabeth M. Nolan (Department of Chemistry) B Bert van den Berg (Biosciences Institute, The Medical School, Newcastle University)

Abstract

Iron is an essential element that can be growth-limiting in microbial communities, particularly those present within host organisms. To acquire iron, many bacteria secrete siderophores, secondary metabolites that chelate ferric iron. These iron chelates can be transported back into the cell via TonB-dependent transporters in the outer membrane, followed by intracellular liberation of the iron. Pathogenic Escherichia coli and Salmonella produce siderophores during gut infection. In response to iron starvation, the human gut symbiont Bacteroides thetaiotaomicron upregulates an iron piracy system, XusABC, which steals iron-bound siderophores from the invading pathogens. Here, we investigated the molecular details of xenosiderophore uptake across the outer membrane by the XusAB complex. Our crystal and cryogenic electron microscopy structures explain how the XusB lipoprotein recognizes iron-bound xenosiderophores and passes them on to the XusA TonB-dependent transporter. Moreover, we show that Xus homologues can transport a variety of siderophores with different iron-chelating functional groups.

Article Details

Volume / Issue Vol. 123, Issue 18
Published May 05, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

A

Augustinas Silale

Biosciences Institute, Newcastle University, Faculty of Medical Sciences

Y

Yung Li Soo

Biosciences Institute, Newcastle University, Faculty of Medical Sciences

H

Hannah Mark

Biosciences Institute, Newcastle University, Faculty of Medical Sciences

R

Rachel N. Motz

Department of Chemistry

A

Arnaud Basle

E

Elizabeth M. Nolan

Department of Chemistry

B

Bert van den Berg

Biosciences Institute, The Medical School, Newcastle University