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Journal of Bacteriology|May 4, 2022
Retraction ATPase Motors from Three Orthologous Type IVa Pilus Systems Support Promiscuous Retraction of the Vibrio cholerae Competence PilusEvan Couser, Jennifer L Chlebek, Ankur B DaliaScientific Reports|September 22, 2020
A modular chromosomally integrated toolkit for ectopic gene expression in Vibrio choleraeTriana N Dalia, Jennifer L Chlebek, Ankur B DaliaProceedings of the National Academy of Sciences of the United States of America|November 18, 2021
Motor-independent retraction of type IV pili is governed by an inherent property of the pilus filamentJennifer L Chlebek, Rémi Denise, Lisa Craig, et al.Applied and Environmental Microbiology|May 15, 2021
Fresh Extension of Vibrio cholerae Competence Type IV Pili Predisposes Them for Motor-Independent RetractionJennifer L Chlebek, Triana N Dalia, Nicolas Biais, et al.Plos Genetics|June 4, 2026
The stoichiometry of minor-to-major pilins regulates the dynamic activity of the type IVa competence pilus in Vibrio choleraeNicholas D Christman, Triana N Dalia, Jennifer L Chlebek, et al.Biorxiv : the Preprint Server for Biology|February 6, 2026
The stoichiometry of minor-to-major pilins regulates the dynamic activity of the type IVa competence pilus in Vibrio choleraeNicholas D Christman, Triana N Dalia, Jennifer L Chlebek, et al.Nucleic Acids Research|June 1, 2023
Prolonging genetic circuit stability through adaptive evolution of overlapping genesJennifer L Chlebek, Sean P Leonard, Christina Kang-Yun, et al.Plos Genetics|October 29, 2019
The quorum sensing transcription factor AphA directly regulates natural competence in Vibrio choleraeJames R J Haycocks, Gemma Z L Warren, Lucas M Walker, et al.Science Advances|January 4, 2020
A bifunctional ATPase drives tad pilus extension and retractionCourtney K Ellison, Jingbo Kan, Jennifer L Chlebek, et al.Plos Genetics|October 19, 2019
PilT and PilU are homohexameric ATPases that coordinate to retract type IVa piliJennifer L Chlebek, Hannah Q Hughes, Aleksandra S Ratkiewicz, et al.Pageof 2