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Molecular Microbiology|August 30, 2007
Assimilation of NAD(+) precursors in Candida glabrataBiao Ma, Shih-Jung Pan, Margaret L Zupancic, et al.Molecular Microbiology|February 3, 2005
Telomere length control and transcriptional regulation of subtelomeric adhesins in Candida glabrataIrene Castaño, Shih-Jung Pan, Margaret Zupancic, et al.Genes & Development|September 4, 2003
Virulence-related surface glycoproteins in the yeast pathogen Candida glabrata are encoded in subtelomeric clusters and subject to RAP1- and SIR-dependent transcriptional silencingAlejandro De Las Peñas, Shih-Jung Pan, Irene Castaño, et al.Molecular and Cellular Biology|May 20, 2009
High-affinity transporters for NAD+ precursors in Candida glabrata are regulated by Hst1 and induced in response to niacin limitationBiao Ma, Shih-Jung Pan, Renee Domergue, et al.Eukaryotic Cell|October 23, 2012
Mutants in the Candida glabrata glycerol channels are sensitized to cell wall stressSara E Beese-Sims, Shih-Jung Pan, Jongmin Lee, et al.Molecular and Cellular Neurosciences|September 4, 2004
The transcriptional repressor Mecp2 regulates terminal neuronal differentiationValéry Matarazzo, Deborah Cohen, Amy M Palmer, et al.G3 (Bethesda, Md.)|August 13, 2013
Expression plasmids for use in Candida glabrataRebecca E Zordan, Yuxia Ren, Shih-Jung Pan, et al.Eukaryotic Cell|October 7, 2008
yKu70/yKu80 and Rif1 regulate silencing differentially at telomeres in Candida glabrataLluvia L Rosas-Hernández, Alejandro Juárez-Reyes, Omar E Arroyo-Helguera, et al.Genetics|January 12, 2012
A novel downstream regulatory element cooperates with the silencing machinery to repress EPA1 expression in Candida glabrataVerónica Gallegos-García, Shih-Jung Pan, Jacqueline Juárez-Cepeda, et al.Nature|April 4, 2008
A nuclear receptor-like pathway regulating multidrug resistance in fungiJitendra K Thakur, Haribabu Arthanari, Fajun Yang, et al.Pageof 2