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Plos One|July 1, 2016
Host-Imposed Copper Poisoning Impacts Fungal Micronutrient Acquisition during Systemic Candida albicans InfectionsJoanna Mackie, Edina K Szabo, Dagmar S Urgast, et al.Plos Pathogens|May 26, 2017
Adaptation of Candida albicans to environmental pH induces cell wall remodelling and enhances innate immune recognitionSarah L Sherrington, Eleanor Sorsby, Nabeel Mahtey, et al.Medical Mycology|January 9, 2020
The environmental stress sensitivities of pathogenic Candida species, including Candida auris, and implications for their spread in the hospital settingHelen Heaney, Juliette Laing, Linda Paterson, et al.Journal of Clinical Microbiology|April 30, 2010
Multicenter collaborative study for standardization of Candida albicans genotyping using a polymorphic microsatellite markerDea Garcia-Hermoso, Donna M MacCallum, Timothy J Lott, et al.Journal of Medical Microbiology|June 2, 2012
Echinocandin resistance due to simultaneous FKS mutation and increased cell wall chitin in a Candida albicans bloodstream isolate following brief exposure to caspofunginToufeeq Imtiaz, Kathy K Lee, Carol A Munro, et al.Molecular Microbiology|February 26, 2009
Genome-wide gene expression profiling and a forward genetic screen show that differential expression of the sodium ion transporter Ena21 contributes to the differential tolerance of Candida albicans and Candida dubliniensis to osmotic stressBrice Enjalbert, Gary P Moran, Claire Vaughan, et al.BMC Research Notes|July 27, 2013
Role of the Candida albicans MNN1 gene family in cell wall structure and virulenceSteven Bates, Rebecca A Hall, Jill Cheetham, et al.Eukaryotic Cell|December 22, 2009
Comparative transcript profiling of Candida albicans and Candida dubliniensis identifies SFL2, a C. albicans gene required for virulence in a reconstituted epithelial infection modelMartin J Spiering, Gary P Moran, Murielle Chauvel, et al.Plos One|June 4, 2015
Contribution of Fdh3 and Glr1 to Glutathione Redox State, Stress Adaptation and Virulence in Candida albicansAnna T Tillmann, Karin Strijbis, Gary Cameron, et al.The Journal of Biological Chemistry|April 22, 2005
Candida albicans Pmr1p, a secretory pathway P-type Ca2+/Mn2+-ATPase, is required for glycosylation and virulenceSteven Bates, Donna M MacCallum, Gwyneth Bertram, et al.Pageof 8