Design of a live-attenuated bacterial vaccine using effector network engineering

S Sarah Jordan P Priyanka Biswas M Maria L. Alberdi J Jake Samuel Z Zuza Kozic R Rita Berkachy V Vishwas Mishra N Nazila Kamaly O Oscar Ces J Jyoti Choudhary J Julia Sanchez-Garrido A Abigail Clements (Rutherford Appleton Laboratory, Research Complex at Harwell) G Gad Frankel (Department of Life Sciences, Imperial College London)

Abstract

Abstract Enteropathogenic Escherichia coli (EPEC) and Citrobacter rodentium (CR) are extracellular enteric attaching and effacing (A/E) pathogens of humans and mice, respectively. Their virulence relies on intimate bacterial attachment and a network of type III secretion system effectors. Here, through systematic reduction and redesign of the effector network in CR, we develop an attenuated strain, CRV (CR Vaccine), encoding a subset of ten effectors. CRV colonises C57BL/6 mice ~100-fold lower than wild type CR (CR WT ) without causing overt pathogenesis. Moreover, C3H/HeN mice, which succumb to CR WT infection, survive CRV challenge. Vaccination with CRV confers protection against subsequent CR WT infection in both mouse strains. Serological analysis reveals a repertoire of dominant CR antigens, including the O-antigen, the virulence factors intimin, EspA and Tir and the outer membrane proteins Lpp, OmpA, MetQ and CARC (an AIDA-like autotransporter). We show that CR WT and CRV immunisation elicits comparable B cell and antibody responses, which is contingent on intimate bacterial attachment. A corresponding EPEC strain ( E. coli Vaccine, ECV) effectively colonises epithelial cells in a gut-on-chip model. These findings establish effector network minimisation as a generalisable strategy for rational bacterial attenuation and live-attenuated vaccine design.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 07, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

S

Sarah Jordan

P

Priyanka Biswas

M

Maria L. Alberdi

J

Jake Samuel

Z

Zuza Kozic

R

Rita Berkachy

V

Vishwas Mishra

N

Nazila Kamaly

O

Oscar Ces

J

Jyoti Choudhary

J

Julia Sanchez-Garrido

A

Abigail Clements

Rutherford Appleton Laboratory, Research Complex at Harwell

G

Gad Frankel

Department of Life Sciences, Imperial College London