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The Journal of Biological Chemistry|January 17, 2014
Phosphatidylethanolamine synthesis in the parasite mitochondrion is required for efficient growth but dispensable for survival of Toxoplasma gondiiAnne Hartmann, Maria Hellmund, Richard Lucius, et al.The Journal of Biological Chemistry|July 21, 2017
A plant/fungal-type phosphoenolpyruvate carboxykinase located in the parasite mitochondrion ensures glucose-independent survival of Toxoplasma gondiiRichard Nitzsche, Özlem Günay-Esiyok, Maximilian Tischer, et al.Plos Pathogens|July 13, 2018
Illuminating pathogen-host intimacy through optogeneticsRuben Dario Arroyo-Olarte, Laura Thurow, Vera Kozjak-Pavlovic, et al.Microbial Cell (Graz, Austria)|March 31, 2017
Optogenetic monitoring identifies phosphatidylthreonine-regulated calcium homeostasis in Toxoplasma gondiiArunakar Kuchipudi, Ruben D Arroyo-Olarte, Friederike Hoffmann, et al.Frontiers in Cellular and Infection Microbiology|April 7, 2018
A CTP Synthase Undergoing Stage-Specific Spatial Expression Is Essential for the Survival of the Intracellular Parasite Toxoplasma gondiiHeidy Y Narvaez-Ortiz, Andrea J Lopez, Nishith Gupta, et al.Cell Discovery|May 31, 2018
Lipid analysis of Eimeria sporozoites reveals exclusive phospholipids, a phylogenetic mosaic of endogenous synthesis, and a host-independent lifestylePengfei Kong, Maik J Lehmann, J Bernd Helms, et al.Sensors (Basel, Switzerland)|February 5, 2020
Overview of Earth Observation Satellite Platform Microvibration Detection MethodsXinming Tang, Junfeng Xie, Hong Zhu, et al.Computational and Structural Biotechnology Journal|March 20, 2023
Apically-located P4-ATPase1-Lem1 complex internalizes phosphatidylserine and regulates motility-dependent invasion and egress in Toxoplasma gondiiKai Chen, Xiyu Huang, Ute Distler, et al.Mucosal Immunology|December 26, 2013
Eimeria falciformis infection of the mouse caecum identifies opposing roles of IFNγ-regulated host pathways for the parasite developmentManuela Schmid, Emanuel Heitlinger, Simone Spork, et al.The Journal of Biological Chemistry|February 15, 2005
Selective disruption of phosphatidylcholine metabolism of the intracellular parasite Toxoplasma gondii arrests its growthNishith Gupta, Matthew M Zahn, Isabelle Coppens, et al.Pageof 24