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Mbio|March 5, 2020
Defining Stage-Specific Activity of Potent New Inhibitors of Cryptosporidium parvum Growth In VitroLisa J Funkhouser-Jones, Soumya Ravindran, L David SibleyCurrent Biology : CB|May 22, 2018
The Maternal Effect Gene Wds Controls Wolbachia Titer in NasoniaLisa J Funkhouser-Jones, Edward J van Opstal, Ananya Sharma, et al.Elife|November 26, 2014
Antibacterial gene transfer across the tree of lifeJason A Metcalf, Lisa J Funkhouser-Jones, Kristen Brileya, et al.Peerj|December 15, 2015
Wolbachia co-infection in a hybrid zone: discovery of horizontal gene transfers from two Wolbachia supergroups into an animal genomeLisa J Funkhouser-Jones, Stephanie R Sehnert, Paloma Martínez-Rodríguez, et al.Mbio|December 16, 2020
Neonatal Mouse Gut Metabolites Influence Cryptosporidium parvum Infection in Intestinal Epithelial CellsKelli L VanDussen, Lisa J Funkhouser-Jones, Marianna E Akey, et al.Infection and Immunity|March 10, 2026
The Borreliella burgdorferi BosR-associated small non-coding RNA BasA regulates virulenceBrittany L Shapiro, Prashant Jaiswal, Lisa J Funkhouser-Jones, et al.Nature|February 28, 2017
Prophage WO genes recapitulate and enhance Wolbachia-induced cytoplasmic incompatibilityDaniel P LePage, Jason A Metcalf, Sarah R Bordenstein, et al.Biorxiv : the Preprint Server for Biology|June 9, 2023
Microbiota produced indole metabolites disrupt host cell mitochondrial energy production and inhibitLisa J Funkhouser-Jones, Rui Xu, Georgia Wilke, et al.Cell Reports|June 29, 2023
Microbiota-produced indole metabolites disrupt mitochondrial function and inhibit Cryptosporidium parvum growthLisa J Funkhouser-Jones, Rui Xu, Georgia Wilke, et al.Cell Host & Microbe|June 25, 2019
A Stem-Cell-Derived Platform Enables Complete Cryptosporidium Development In Vitro and Genetic TractabilityGeorgia Wilke, Lisa J Funkhouser-Jones, Yi Wang, et al.Pageof 2