Zobrazeno 1 - 10
of 35
pro vyhledávání: '"Ronda J Rolfes"'
Autor:
Tanaporn Wangsanut, Sylvia J Y Arnold, Safia Z Jilani, Sarah Marzec, Robert C Monsour, Ronda J Rolfes
Publikováno v:
G3: Genes, Genomes, Genetics, Vol 13, Iss 6 (2023)
AbstractThe pathogenic yeast, Candida albicansgrf10grf10C. albicans
Externí odkaz:
https://doaj.org/article/c72a30f1b0a840b6b03897defc8beb24
Autor:
Kathleen Romanowski, Alexander Zaborin, Vesta Valuckaite, Ronda J Rolfes, Trissa Babrowski, Cindy Bethel, Andrea Olivas, Olga Zaborina, John C Alverdy
Publikováno v:
PLoS ONE, Vol 7, Iss 1, p e30119 (2012)
Candida albicans is an opportunistic pathogen that proliferates in the intestinal tract of critically ill patients where it continues to be a major cause of infectious-related mortality. The precise cues that shift intestinal C. albicans from its ubi
Externí odkaz:
https://doaj.org/article/983755707bb747088e6a30aecf420ed7
Publikováno v:
Current Genetics. 66:901-910
Saccharomyces cerevisiae adapts to oxidative, osmotic stress and nutrient deprivation through transcriptional changes, decreased proliferation, and entry into other developmental pathways such as pseudohyphal formation and sporulation. Inositol pyrop
Autor:
Adam C. Resnick, Andrew P. Capaldi, Victoria A. Morrissette, Ronda J. Rolfes, Elizabeth A. Steidle, Lucy Chong, Kotaro Fujimaki
Publikováno v:
Journal of Biological Chemistry. 295:2043-2056
The environmental stress response (ESR) is critical for cell survival. Yeast cells unable to synthesize inositol pyrophosphates (PP-InsPs) are unable to induce the ESR. We recently discovered a diphosphoinositol pentakisphosphate (PP-InsP5) phosphata
Autor:
Elizabeth A, Steidle, Victoria A, Morrissette, Kotaro, Fujimaki, Lucy, Chong, Adam C, Resnick, Andrew P, Capaldi, Ronda J, Rolfes
Publikováno v:
J Biol Chem
The environmental stress response (ESR) is critical for cell survival. Yeast cells unable to synthesize inositol pyrophosphates (PP-InsPs) are unable to induce the ESR. We recently discovered a diphosphoinositol pentakisphosphate (PP-InsP(5)) phospha
Publikováno v:
mSphere, Vol 4, Iss 1, p e00094-19 (2019)
mSphere
mSphere, Vol 4, Iss 1 (2019)
mSphere
mSphere, Vol 4, Iss 1 (2019)
Volume 3, no. 5, e00467-18, 2018, [https://doi.org/10.1128/mSphere.00467-18][1]. Supplemental Figure S3 legend: the description for panel B of this figure is incomplete. The last sentence of the description for this panel should read, “Plates were
Autor:
Rocco Ferrandino, Ronda J. Rolfes, Maedeh Mohammednetej, Shemona Rattila, Waseem Nosair, Erica L. Gerace, Gaurav Arora, Amanda Zirzow Subic, Anne G. Rosenwald
Publikováno v:
G3: Genes|Genomes|Genetics
G3: Genes, Genomes, Genetics, Vol 6, Iss 9, Pp 2893-2907 (2016)
G3: Genes, Genomes, Genetics, Vol 6, Iss 9, Pp 2893-2907 (2016)
Candida glabrata is an important human fungal pathogen whose incidence continues to rise. Because many clinical isolates are resistant to azole drugs, the drugs of choice to treat such infections are members of the echinocandin family, although there
Autor:
Elliott Crooke, Ronda J. Rolfes, Elizabeth A. Steidle, Dorothea Fiedler, Mingxuan Wu, Adam C. Resnick, Lucy Chong
Publikováno v:
Journal of Biological Chemistry. 291:6772-6783
Inositol pyrophosphates are high energy signaling molecules involved in cellular processes, such as energetic metabolism, telomere maintenance, stress responses, and vesicle trafficking, and can mediate protein phosphorylation. Although the inositol
Autor:
Tanaporn Wangsanut, Anup K. Ghosh, Peter G. Metzger, William A. Fonzi, Ronda J. Rolfes, Geraldine Butler
Publikováno v:
mSphere
mSphere, Vol 2, Iss 4 (2017)
mSphere, Vol 2, Iss 4, p e00161-17 (2017)
mSphere, Vol 2, Iss 4 (2017)
mSphere, Vol 2, Iss 4, p e00161-17 (2017)
Candida albicans is a commensal and a common constituent of the human microbiota; however, it can become pathogenic and cause infections in both immunocompetent and immunocompromised people. C. albicans exhibits remarkable metabolic versatility as it
Publikováno v:
Biomedical Microdevices. 15:887-893
The aim of this study was to demonstrate targeted delivery of protein-based bactericidal antibiotics using electrospun polymer nanofibers. Previous studies have utilized electrospinning to create nanofibers for the localized delivery of therapeutic a