Malcolm Whiteway

Genomics University of Alberta, Edmonton, Alberta, Canada 
"Malcolm Whiteway"
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Rashid S, Correia-Mesquita TO, Godoy P, et al. (2022) SAGA Complex Subunits in Differentially Regulate Filamentation, Invasiveness, and Biofilm Formation. Frontiers in Cellular and Infection Microbiology. 12: 764711
Omran RP, Ramírez-Zavala B, Aji Tebung W, et al. (2021) The zinc cluster transcription factor Rha1 is a positive filamentation regulator in Candida albicans. Genetics
Shrivastava M, Feng J, Coles M, et al. (2021) Modulation of the complex regulatory network for methionine biosynthesis in fungi. Genetics. 217
Xu H, Fang T, Omran RP, et al. (2020) RNA sequencing reveals an additional Crz1-binding motif in promoters of its target genes in the human fungal pathogen Candida albicans. Cell Communication and Signaling : Ccs. 18: 1
Costa ACBP, Omran RP, Correia-Mesquita TO, et al. (2019) Screening of Candida albicans GRACE library revealed a unique pattern of biofilm formation under repression of the essential gene ILS1. Scientific Reports. 9: 9187
Polvi EJ, Veri AO, Liu Z, et al. (2019) Functional divergence of a global regulatory complex governing fungal filamentation. Plos Genetics. 15: e1007901
Islam A, Tebbji F, Mallick J, et al. (2018) Mms21: A Putative SUMO E3 Ligase in That Negatively Regulates Invasiveness and Filamentation, and Is Required for Genotoxic and Cellular Stress Response. Genetics
Tebung WA, Omran RP, Fulton DL, et al. (2017) Put3 Positively Regulates Proline Utilization in Candida albicans. Msphere. 2
Tebbji F, Chen Y, Sellam A, et al. (2017) The Genomic Landscape of the Fungus-Specific SWI/SNF Complex Subunit, Snf6, in Candida albicans. Msphere. 2
Regan H, Scaduto C, Hirakawa MP, et al. (2017) Negative Regulation of Filamentous Growth in Candida albicans by Dig1p. Molecular Microbiology
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