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Molecular Microbiology|November 7, 2017
Analysis of recombinational switching at the antigenic variation locus of the Lyme spirochete using a novel PacBio sequencing pipelineTheodore B Verhey, Mildred Castellanos, George ChaconasCell Reports|May 31, 2018
Antigenic Variation in the Lyme Spirochete: Insights into Recombinational Switching with a Suggested Role for Error-Prone RepairTheodore B Verhey, Mildred Castellanos, George ChaconasMolecular Microbiology|December 24, 2018
Antigenic variation in the Lyme spirochete: detailed functional assessment of recombinational switching at vlsE in the JD1 strain of Borrelia burgdorferiTheodore B Verhey, Mildred Castellanos, George ChaconasMolecular Microbiology|July 12, 2018
A Borrelia burgdorferi mini-vls system that undergoes antigenic switching in mice: investigation of the role of plasmid topology and the long inverted repeatMildred Castellanos, Theodore B Verhey, George ChaconasThe Journal of Biological Chemistry|November 23, 2019
Changing of the guard: How the Lyme disease spirochete subverts the host immune responseGeorge Chaconas, Mildred Castellanos, Theodore B VerheyFrontiers in Microbiology|June 6, 2022
The Putative Endonuclease Activity of MutL Is Required for the Segmental Gene Conversion Events That Drive Antigenic Variation of the Lyme Disease SpirocheteMildred Castellanos, Theodore B Verhey, Madeleine Goldstein, et al.Biorxiv : the Preprint Server for Biology|September 24, 2024
Transendothelial migration of the Lyme disease spirochete involves spirochete internalization as an intermediate step through a transcellular pathway that involves Cdc42 and Rac1Daiana Alvarez-Olmedo, Claire Kamaliddin, Theodore B Verhey, et al.Nucleic Acids Research|May 30, 2024
mosaicMPI: a framework for modular data integration across cohorts and -omics modalitiesTheodore B Verhey, Heewon Seo, Aaron Gillmor, et al.Microbiology Spectrum|December 27, 2024
Transendothelial migration of the Lyme disease spirochete involves spirochete internalization as an intermediate step through a transcellular pathway that involves Cdc42 and Rac1Daiana Alvarez-Olmedo, Claire Kamaliddin, Theodore B Verhey, et al.Journal of Proteome Research|August 18, 2023
Mouse Model of Fragile X Syndrome Analyzed by Quantitative Proteomics: A Comparison of MethodsRuzena Filandrova, Pauline Douglas, Xiaoqin Zhan, et al.Pageof 2