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Plos Genetics|February 15, 2024
CryptoCEN: A Co-Expression Network for Cryptococcus neoformans reveals novel proteins involved in DNA damage repairMatthew J O'Meara, Jackson R Rapala, Connie B Nichols, et al.Scientific Reports|March 28, 2018
HDAC genes play distinct and redundant roles in Cryptococcus neoformans virulenceFabiana Brandão, Shannon K Esher, Kyla S Ost, et al.Journal of Industrial Microbiology & Biotechnology|February 28, 2021
Anti-cryptococcal activity of preussolides A and B, phosphoethanolamine-substituted 24-membered macrolides, and leptosin C from coprophilous isolates of Preussia typharumBruno Perlatti, Nan Lan, Meichun Xiang, et al.Plos Pathogens|June 5, 2018
Defects in intracellular trafficking of fungal cell wall synthases lead to aberrant host immune recognitionShannon K Esher, Kyla S Ost, Maria A Kohlbrenner, et al.Plos Pathogens|April 26, 2023
A fungal lytic polysaccharide monooxygenase is required for cell wall integrity, thermotolerance, and virulence of the fungal human pathogen Cryptococcus neoformansCorinna Probst, Magnus Hallas-Møller, Johan Ø Ipsen, et al.Mbio|November 21, 2022
Extension of O-Linked Mannosylation in the Golgi Apparatus Is Critical for Cell Wall Integrity Signaling and Interaction with Host Cells in Cryptococcus neoformans PathogenesisEun Jung Thak, Ye Ji Son, Dong-Jik Lee, et al.Mbio|August 25, 2025
Inhibitors of trehalose-6-phosphate synthase activity in fungal pathogens compromise thermal tolerance pathwaysYi Miao, Vikas Yadav, William Shadrick, et al.Mbio|June 9, 2026
A cysteine-rich domain of the Cryptococcus neoformans Cuf1 transcription factor is required for high copper stress sensing and fungal virulenceCorinna Probst, Chloe Insler, Catherine A Denning-Jannace, et al.Pageof 4