A functional screen for bacterial ubiquitin regulation identifies an unusual Pseudomonas aeruginosa E3 ligase

Abstract Bacterial pathogens have adapted secreted effector proteins that hijack host ubiquitination to gain control over host responses. These effectors can exhibit, for example, E3 ligase or deubiquitinase activities, often without any homology to eukaryotic regulators. Such convergence in function poses a challenge to the discovery of additional ubiquitin-targeted virulence factors. Pseudomonas aeruginosa , for example, is a pervasive opportunistic pathogen with numerous mechanisms of virulence, yet no described E3 ligases or deubiquitinases. We have developed a workflow to functionally screen natively secreted bacterial effectors for ubiquitin regulatory activities. After benchmarking this approach on Salmonella Typhimurium, Enteropathogenic Escherichia coli , and Shigella flexneri , we identified a cryptic E3 ligase secreted by P. aeruginosa , which we have termed Pseudomonas Ub ligase 1 (PUL-1). PUL-1 resembles none of the other E3 ligases previously established in or outside of the eukaryotic system. Importantly, in an animal model of P. aeruginosa infection, PUL-1 ligase activity plays an important role in regulating virulence. Thus, functional identification of ubiquitin-targeted effectors can expand our appreciation of ubiquitin regulation during bacterial pathogenesis.

Authors

Publication Details

Journal
The EMBO Journal
Published
2026-09-28
DOI
https://doi.org/10.1038/s44318-026-00917-7
Primary Topic
Ubiquitin and proteasome pathways
Type
article
Field-Weighted Citation Impact
0.00

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article

A functional screen for bacterial ubiquitin regulation identifies an unusual Pseudomonas aeruginosa E3 ligase

Jason McDermott, Ernesto Satoshi Nakayasu, Supender Kaur, Gus D. Warren et al.
The EMBO Journal
Ubiquitin and proteasome pathways
article

A functional screen for bacterial ubiquitin regulation identifies an unusual Pseudomonas aeruginosa E3 ligase

Jason McDermott, Ernesto Satoshi Nakayasu, Supender Kaur, Gus D. Warren, Paul P. Geurink, Monique P. C. Mulder, Cameron G. Roberts, Michael E. Divine, Shun‐Je Bhark, Jonathan N. Pruneda, Natalia V. Kirienko, Joshua Adkins, Alejandro Aballay, Aaron J. Ogden, Donghoon Kang
article en

Abstract

Abstract Bacterial pathogens have adapted secreted effector proteins that hijack host ubiquitination to gain control over host responses. These effectors can exhibit, for example, E3 ligase or deubiquitinase activities, often without any homology to eukaryotic regulators. Such convergence in function poses a challenge to the discovery of additional ubiquitin-targeted virulence factors. Pseudomonas aeruginosa , for example, is a pervasive opportunistic pathogen with numerous mechanisms of virulence, yet no described E3 ligases or deubiquitinases. We have developed a workflow to functionally screen natively secreted bacterial effectors for ubiquitin regulatory activities. After benchmarking this approach on Salmonella Typhimurium, Enteropathogenic Escherichia coli , and Shigella flexneri , we identified a cryptic E3 ligase secreted by P. aeruginosa , which we have termed Pseudomonas Ub ligase 1 (PUL-1). PUL-1 resembles none of the other E3 ligases previously established in or outside of the eukaryotic system. Importantly, in an animal model of P. aeruginosa infection, PUL-1 ligase activity plays an important role in regulating virulence. Thus, functional identification of ubiquitin-targeted effectors can expand our appreciation of ubiquitin regulation during bacterial pathogenesis.

The EMBO Journal
National Institute of General Medical Sciences, National Institute of Allergy and Infectious Diseases
Openalex Percentile: Top 20%
Ubiquitin and proteasome pathways
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