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Essays in Biochemistry|October 26, 2011
Intracellular growth and pathogenesis of Leishmania parasitesThomas Naderer, Malcolm J McConville
Annual Review of Microbiology|July 5, 2011
Metabolic pathways required for the intracellular survival of LeishmaniaMalcolm J McConville, Thomas Naderer
Cellular Microbiology|December 12, 2007
The Leishmania-macrophage interaction: a metabolic perspectiveThomas Naderer, Malcolm J McConville
Molecular and Biochemical Parasitology|December 7, 2002
Characterization of a Leishmania mexicana mutant defective in synthesis of free and protein-linked GPI glycolipidsThomas Naderer, Malcolm J McConville
Molecular Microbiology|June 6, 2008
Role of hexosamine biosynthesis in Leishmania growth and virulenceThomas Naderer, Edmund Wee, Malcolm J McConville
Molecular Microbiology|February 16, 2011
Calcineurin is required for Leishmania major stress response pathways and for virulence in the mammalian hostThomas Naderer, Orwa Dandash, Malcolm J McConville
Plos Pathogens|January 5, 2011
Evidence that intracellular stages of Leishmania major utilize amino sugars as a major carbon sourceThomas Naderer, Joanne Heng, Malcolm J McConville
Current Molecular Medicine|September 11, 2004
Surface determinants of Leishmania parasites and their role in infectivity in the mammalian hostThomas Naderer, James E Vince, Malcolm J McConville
International Journal for Parasitology|January 28, 2012
Acylation-dependent and-independent membrane targeting and distinct functions of small myristoylated proteins (SMPs) in Leishmania majorDedreia Tull, Joanne Heng, Paul R Gooley, et al.
Molecular Microbiology|February 8, 2018
Leishmania mexicana can utilize amino acids as major carbon sources in macrophages but not in animal modelsEleanor C Saunders, Thomas Naderer, Jenny Chambers, et al.
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