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Plos One|January 20, 2023
Farnesol and phosphorylation of the transcriptional regulator Efg1 affect Candida albicans white-opaque switching ratesLucas R Brenes, Alexander D Johnson, Matthew B LohseScience (New York, N.Y.)|October 5, 2013
Following gene duplication, paralog interference constrains transcriptional circuit evolutionChristopher R Baker, Victor Hanson-Smith, Alexander D JohnsonGenetics|April 29, 2023
Evolution of a new form of haploid-specific gene regulation appearing in a limited clade of ascomycete yeast speciesFrancesca Del Frate, Megan E Garber, Alexander D JohnsonThe EMBO Journal|May 30, 2003
Haploinsufficiency-based large-scale forward genetic analysis of filamentous growth in the diploid human fungal pathogen C.albicansM Andrew Uhl, Matt Biery, Nancy Craig, et al.Nature|September 29, 2006
Evolution of alternative transcriptional circuits with identical logicAnnie E Tsong, Brian B Tuch, Hao Li, et al.G3 (Bethesda, Md.)|June 4, 2020
A Set of Diverse Genes Influence the Frequency of White-Opaque Switching in Candida albicansLucas R Brenes, Matthew B Lohse, Nairi Hartooni, et al.Nature Reviews. Microbiology|October 25, 2017
Development and regulation of single- and multi-species Candida albicans biofilmsMatthew B Lohse, Megha Gulati, Alexander D Johnson, et al.Genome Research|March 14, 2007
Computational and experimental approaches double the number of known introns in the pathogenic yeast Candida albicansQuinn M Mitrovich, Brian B Tuch, Christine Guthrie, et al.Proceedings of the National Academy of Sciences of the United States of America|July 28, 2010
Distinct class of DNA-binding domains is exemplified by a master regulator of phenotypic switching in Candida albicansMatthew B Lohse, Rebecca E Zordan, Christopher W Cain, et al.Methods in Enzymology|October 16, 2010
Genetics and molecular biology in Candida albicansAaron D Hernday, Suzanne M Noble, Quinn M Mitrovich, et al.Pageof 12