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Microbiology Commons

Open Access. Powered by Scholars. Published by Universities.®

Dartmouth Scholarship

2010

Fungal proteins

Discipline

Articles 1 - 2 of 2

Full-Text Articles in Microbiology

Functional Characterization Of Mat1-1-Specific Mating-Type Genes In The Homothallic Ascomycete Sordaria Macrospora Provides New Insights Into Essential And Nonessential Sexual Regulators, V. Klix, M. Nowrousian, C. Ringelberg, J. J. Loros Apr 2010

Functional Characterization Of Mat1-1-Specific Mating-Type Genes In The Homothallic Ascomycete Sordaria Macrospora Provides New Insights Into Essential And Nonessential Sexual Regulators, V. Klix, M. Nowrousian, C. Ringelberg, J. J. Loros

Dartmouth Scholarship

Mating-type genes in fungi encode regulators of mating and sexual development. Heterothallic ascomycete species require different sets of mating-type genes to control nonself-recognition and mating of compatible partners of different mating types. Homothallic (self-fertile) species also carry mating-type genes in their genome that are essential for sexual development. To analyze the molecular basis of homothallism and the role of mating-type genes during fruiting-body development, we deleted each of the three genes, SmtA-1 (MAT1-1-1), SmtA-2 (MAT1-1-2), and SmtA-3 (MAT1-1-3), contained in the MAT1-1 part of the mating-type locus of the homothallic ascomycete species Sordaria macrospora. Phenotypic analysis of deletion mutants revealed …


Farnesol Induces Hydrogen Peroxide Resistance In Candida Albicans Yeast By Inhibiting The Ras-Cyclic Amp Signaling Pathway, Aurélie Deveau, Amy E. Piispanen, Angelyca A. Jackson, Deborah A. Hogan Jan 2010

Farnesol Induces Hydrogen Peroxide Resistance In Candida Albicans Yeast By Inhibiting The Ras-Cyclic Amp Signaling Pathway, Aurélie Deveau, Amy E. Piispanen, Angelyca A. Jackson, Deborah A. Hogan

Dartmouth Scholarship

Farnesol, a Candida albicans cell-cell signaling molecule that participates in the control of morphology, has an additional role in protection of the fungus against oxidative stress. In this report, we show that although farnesol induces the accumulation of intracellular reactive oxygen species (ROS), ROS generation is not necessary for the induction of catalase (Cat1)-mediated oxidative-stress resistance. Two antioxidants, α-tocopherol and, to a lesser extent, ascorbic acid effectively reduced intracellular ROS generation by farnesol but did not alter farnesol-induced oxidative-stress resistance. Farnesol inhibits the Ras1-adenylate cyclase (Cyr1) signaling pathway to achieve its effects on morphology under hypha-inducing conditions, and we demonstrate …