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Trends in Microbiology|September 29, 2014
Candida albicans hyphal initiation and elongationYang Lu, Chang Su, Haoping LiuMolecular Biology of the Cell|November 23, 2012
Reduced TOR signaling sustains hyphal development in Candida albicans by lowering Hog1 basal activityChang Su, Yang Lu, Haoping LiuNature Communications|October 4, 2016
N-acetylglucosamine sensing by a GCN5-related N-acetyltransferase induces transcription via chromatin histone acetylation in fungiChang Su, Yang Lu, Haoping LiuPlos Pathogens|April 27, 2012
A GATA transcription factor recruits Hda1 in response to reduced Tor1 signaling to establish a hyphal chromatin state in Candida albicansYang Lu, Chang Su, Haoping LiuProceedings of the National Academy of Sciences of the United States of America|January 23, 2014
Quorum sensing controls hyphal initiation in Candida albicans through Ubr1-mediated protein degradationYang Lu, Chang Su, Ohimai Unoje, et al.Plos Biology|August 4, 2011
Hyphal development in Candida albicans requires two temporally linked changes in promoter chromatin for initiation and maintenanceYang Lu, Chang Su, Allen Wang, et al.Msphere|January 17, 2020
Linking Sfl1 Regulation of Hyphal Development to Stress Response Kinases in Candida albicansOhimai Unoje, Mengli Yang, Yang Lu, et al.Mbio|January 17, 2019
CO2 Signaling through the Ptc2-Ssn3 Axis Governs Sustained Hyphal Development of Candida albicans by Reducing Ume6 Phosphorylation and DegradationYang Lu, Chang Su, Shatarupa Ray, et al.Cell Host & Microbe|November 19, 2013
Synergistic regulation of hyphal elongation by hypoxia, CO(2), and nutrient conditions controls the virulence of Candida albicansYang Lu, Chang Su, Norma V Solis, et al.Molecular Biology of the Cell|August 8, 2008
Efg1-mediated recruitment of NuA4 to promoters is required for hypha-specific Swi/Snf binding and activation in Candida albicansYang Lu, Chang Su, Xuming Mao, et al.Pageof 463