نتایج جستجو برای: efg1

تعداد نتایج: 152  

2015
Michael L. Pendrak David D. Roberts Scott G. Filler

Transitions between yeast and hyphae are essential for Candida albicans pathogenesis. The genetic programs that regulate its hyphal development can be distinguished by embedded versus aerobic surface agar invasion. Hbr1, a regulator of white-opaque switching, is also a positive and negative regulator of hyphal invasion. During embedded growth at 24°C, an HBR1/hbr1 strain formed constitutively f...

Journal: :Journal of bacteriology 1999
A Porta A M Ramon W A Fonzi

The pH of the environment has been implicated in controlling the yeast-hypha transition and pathogenesis of Candida albicans. Several C. albicans genes, including PHR1 and PHR2, are pH dependent in their expression. To investigate the mechanism of pH-dependent expression, we have cloned and characterized PRR1 (for pH response regulator). PRR1 is homologous to palF, a component of the pH respons...

Journal: :PLoS Pathogens 2009
Robert J. Bastidas Joseph Heitman Maria E. Cardenas

Eukaryotic cell growth is coordinated in response to nutrient availability, growth factors, and environmental stimuli, enabling cell-cell interactions that promote survival. The rapamycin-sensitive Tor1 protein kinase, which is conserved from yeasts to humans, participates in a signaling pathway central to cellular nutrient responses. To gain insight into Tor-mediated processes in human fungal ...

Journal: :Eukaryotic cell 2013
Melanie L Langford Jessica C Hargarten Krista D Patefield Elizabeth Marta Jill R Blankenship Saranna Fanning Kenneth W Nickerson Audrey L Atkin

Quorum sensing by farnesol in Candida albicans inhibits filamentation and may be directly related to its ability to cause both mucosal and systemic diseases. The Ras1-cyclic AMP signaling pathway is a target for farnesol inhibition. However, a clear understanding of the downstream effectors of the morphological farnesol response has yet to be unraveled. To address this issue, we screened a libr...

2016
Carol A Woolford Katherine Lagree Wenjie Xu Tatyana Aleynikov Hema Adhikari Hiram Sanchez Paul J Cullen Frederick Lanni David R Andes Aaron P Mitchell

Biofilm formation on implanted medical devices is a major source of lethal invasive infection by Candida albicans. Filamentous growth of this fungus is tied to biofilm formation because many filamentation-associated genes are required for surface adherence. Cell cycle or cell growth defects can induce filamentation, but we have limited information about the coupling between filamentation and fi...

2017
Sara J Hanson Kevin P Byrne Kenneth H Wolfe

In haploid cells of Ogataea (Hansenula) polymorpha an environmental signal, nitrogen starvation, induces a reversible change in the structure of a chromosome. This process, mating-type switching, inverts a 19-kb DNA region to place either MATa or MATα genes under centromeric repression of transcription, depending on the orientation of the region. Here, we investigated the genetic pathway that c...

2013
Hongbin Xu Clarissa J. Nobile Anna Dongari-Bagtzoglou

Candida albicans is the most common human fungal pathogen. Many organisms, including C. albicans, secrete glucanases under different environmental conditions. Here, we report a novel role for beta-1, 3- glucanase in inducing Candida albicans to form filaments at 22°C and enhancing filamentation at 37°C in nutrient-rich medium. Quorum sensing, the efg1-signaling and cek1 MAP kinase pathways are ...

Journal: :Infection and immunity 2002
Angelika Felk Marianne Kretschmar Antje Albrecht Martin Schaller Sabine Beinhauer Thomas Nichterlein Dominique Sanglard Hans C Korting Wilhelm Schäfer Bernhard Hube

The ability to change between yeast and hyphal cells (dimorphism) is known to be a virulence property of the human pathogen Candida albicans. The pathogenesis of disseminated candidosis involves adhesion and penetration of hyphal cells from a colonized mucosal site to internal organs. Parenchymal organs, such as the liver and pancreas, are invaded by C. albicans wild-type hyphal cells between 4...

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