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Combinatorial action of regulatory systems generates colistin heteroresistance

Jacob E. Choby, Emily K. Crispell, Muqing Ma, Lam Dai Vu and 3 more

Science Advances | Sep 2, 2026 | 1 citation

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The sigma factor σE is identified as the source of heterogeneity in colistin resistance and the combinatorial action of regulatory systems, encompassing a heterogeneity generator and a distinct resistance generator, gives rise to colistin heteroresistance.

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ABSTRACT Heteroresistance is a form of antibiotic resistance in which a minor subpopulation of resistant cells coexists with a majority susceptible population. Colistin heteroresistance is common among Enterobacter cloacae clinical isolates, threatens its utility as a last-line therapeutic, and has become a model with which to understand the fundamental bases of heteroresistance. Despite numerous insights, the mechanism by which phenotypic heterogeneity is generated within the population and leads to colistin heteroresistance has been unclear. Here, using a transposon-based mutagenesis screen, we identify the sigma factor σ E as the source of heterogeneity in population-wide colistin resistance levels. Single-cell tracking experiments revealed that σ E is active in only one percent of the population at baseline, and only those cells with active σ E survive colistin exposure. However, σ E expression and population heterogeneity are insufficient for survival, as a mutant lacking the PhoPQ two-component system controlling lipid A modifications necessary for colistin resistance retains heterogeneity but loses colistin resistance. These findings lead to a new paradigm in heteroresistance, where the combinatorial action of multiple regulatory systems, encompassing a heterogeneity generator and a distinct resistance generator, are required to give rise to colistin heteroresistance.

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Researchers on this paper

Jacob E. Choby

first | Emory Healthcare | ORCID 0000-0002-3077-0730

Emily K. Crispell

middle | Emory Healthcare

Muqing Ma

middle | Emory Healthcare

Lam Dai Vu

middle | University of Maryland, Baltimore | ORCID 0000-0001-5078-7532

Robert K. Ernst

middle | University of Maryland, Baltimore | ORCID 0000-0001-5016-8694

Minsu Kim

middle | Emory Healthcare | ORCID 0000-0003-1594-4971

David S. Weiss

last | Emory Healthcare | ORCID 0000-0003-0980-7866

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BibTeX

@article{Choby2026Combinatorial,
  title = {Combinatorial action of regulatory systems generates colistin heteroresistance},
  author = {Jacob E. Choby and Emily K. Crispell and Muqing Ma and Lam Dai Vu and Robert K. Ernst and Minsu Kim and David S. Weiss},
  journal = {Science Advances},
  year = {2026},
  doi = {10.1126/sciadv.aec7052},
  url = {https://doi.org/10.1126/sciadv.aec7052}
}

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