-
2024Metabolic reprogramming during Candida albicans planktonic-biofilm transition is modulated by the transcription factors Zcf15 and Zcf26., PLoS Biol 2024 Jun; 22(6): e3002693.
-
2023The pathogenic and colonization potential of Candida africana., Microbes Infect 2023 Sep; (): 105230.
-
2022A phylogenetically-restricted essential cell cycle progression factor in the human pathogen Candida albicans., Nat Commun 2022 Jul; 13(1): 4256.
-
2022Multiple Stochastic Parameters Influence Genome Dynamics in a Heterozygous Diploid Eukaryotic Model., J Fungi (Basel) 2022 Jun; 8(7): .
-
2021Factors that influence bidirectional long-tract homozygosis due to double-strand break repair in Candida albicans., Genetics 2021 Mar; (): .
-
2020The impact of the Fungus-Host-Microbiota interplay upon Candida albicans infections: current knowledge and new perspectives., FEMS Microbiol Rev 2020 Nov; (): .
-
2020Use of CRISPR-Cas9 To Target Homologous Recombination Limits Transformation-Induced Genomic Changes in Candida albicans., mSphere 2020 09; 5(5): .
-
2020Identification and Characterization of Mediators of Fluconazole Tolerance in Candida albicans., Front Microbiol 2020 ; 11(): 591140.
-
2019Candida albicans: An Emerging Yeast Model to Study Eukaryotic Genome Plasticity, Trends Genet. 2019 Apr;35(4):292-307.
-
2019Identification of Recessive Lethal Alleles in the Diploid Genome of a Candida albicans Laboratory Strain Unveils a Potential Role of Repetitive Sequences in Buffering Their Deleterious Impact, mSphere 2019 02;4(1).
-
2018Generating genomic platforms to study Candida albicans pathogenesis., Nucleic Acids Res 2018 08; 46(14): 6935-6949.
-
2016Analysis of Repair Mechanisms following an Induced Double-Strand Break Uncovers Recessive Deleterious Alleles in the Candida albicans Diploid Genome, mBio 2016 10;7(5).
-
2015A FACS-optimized screen identifies regulators of genome stability in Candida albicans, Eukaryotic Cell 2015 Mar;14(3):311-22.
-
2014Distinct and redundant roles of exonucleases in Cryptococcus neoformans: implications for virulence and mating, Fungal Genet. Biol. 2014 Dec;73:20-8.
-
2013A study of the DNA damage checkpoint in Candida albicans: uncoupling of the functions of Rad53 in DNA repair, cell cycle regulation and genotoxic stress-induced polarized growth, Mol. Microbiol. 2014 Feb;91(3):452-71.
-
2012Modular gene over-expression strategies for Candida albicans, Methods Mol. Biol. 2012;845:227-44.
-
2011The contribution of the S-phase checkpoint genes MEC1 and SGS1 to genome stability maintenance in Candida albicans, Fungal Genet. Biol. 2011 Aug;48(8):823-30.
-
2008Analysis of base excision and nucleotide excision repair in Candida albicans, Microbiology (Reading, Engl.) 2008 Aug;154(Pt 8):2446-56.
-
2007Haplotype mapping of a diploid non-meiotic organism using existing and induced aneuploidies, PLoS Genet. 2008 Jan;4(1):e1.
-
2007Role of DNA mismatch repair and double-strand break repair in genome stability and antifungal drug resistance in Candida albicans, Eukaryotic Cell 2007 Dec;6(12):2194-205.
-
2004Homozygosity at the MTL locus in clinical strains of Candida albicans: karyotypic rearrangements and tetraploid formation, Mol. Microbiol. 2004 Jun;52(5):1451-62.
-
2003MFalpha1, the gene encoding the alpha mating pheromone of Candida albicans, Eukaryotic Cell 2003 Dec;2(6):1350-60.
-
2002Many of the genes required for mating in Saccharomyces cerevisiae are also required for mating in Candida albicans, Mol. Microbiol. 2002 Dec;46(5):1345-51.