A Clinically Silent Resistance Phenotype That Promotes Acinetobacter baumannii Survival During Colistin Therapy
Yaqub, M.; Bonde, N.; Maity, T.; Arugonda, R.; Du, Z.; Rudra, C.; Tiwari, S.; Olea-Ozuna, R. J.; Nandy, S.; Boll, J.; Monk, J.; Dillon, N.
Show abstract
Acinetobacter baumannii is a major cause of multidrug-resistant nosocomial infections, particularly ventilator-associated pneumonia, for which therapeutic options are increasingly limited. Colistin, a polymyxin antibiotic, is a drug of last resort for A. baumannii, boasting high susceptibility rates. Yet, despite relatively low rates of breakpoint-defined colistin resistance, clinical outcomes are highly variable, and the bacterial strategies that enable survival during colistin therapy remain poorly understood. Here, we integrate supervised machine-learning-guided genomic prioritization with functional, physiological, and in vivo analyses to interrogate the genetic basis of colistin response in A. baumannii. Machine-learning analysis of clinical isolates identified candidate loci associated with colistin survival, many of which did not alter minimum inhibitory concentration (MIC) when disrupted. Instead, growth-dynamic assays uncovered a subset of mutants capable of maintaining fitness upon inhibitory colistin exposure despite classification as susceptible via standardized antibiotic susceptibility testing. We define this phenotype as clinically silent resistance (CSR), a genetically encoded, MIC-independent survival state. Using a murine pneumonia model, we further demonstrate that CSR mutants thrive during colistin therapy in vivo. Together, these findings reveal a hidden layer of colistin survival that is not captured by standard susceptibility testing and highlight fundamental limitations of breakpoint-centric paradigms for predicting treatment outcomes in A. baumannii.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Antibiotic hypersensitivity signatures identify targets for attack in the Acinetobacter baumannii cell envelope 96%
- Escape mutations circumvent a tradeoff between resistance to beta-lactams and a beta-lactamase inhibitor 95%
- Genomic dissection of the bacterial population underlying Klebsiella pneumoniae infections in hospital patients: insights into an opportunistic pathogen 95%
Similar papers in this journal
- Origin and dynamics of Mycobacterium tuberculosis subpopulations that predictably generate drug tolerance and resistance 95%
- Streptococcus mitis bacteriocins drive contact-dependent lysis of S. pneumoniae facilitating transformation in multispecies environments 94%
- A new class of cell wall-recycling L,D-carboxypeptidase determines β-lactam susceptibility and morphogenesis in Acinetobacter baumannii 94%
Similar papers in this journal
Similar papers in this journal
- Genetic determinants facilitating the evolution of resistance to carbapenem antibiotics 96%
- Treatment history shapes the evolution of complex carbapenem-resistant phenotypes in Klebsiella spp. 95%
- Metapopulation ecology links antibiotic resistance, consumption and patient transfers in a network of hospital wards 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.