Osmoregulation in Saccharomyces cerevisiae via mechanisms other than the high-osmolarity glycerol pathway
Author:
Affiliation:
1. Department of Biotechnology, TERI University, New Delhi, India
Publisher
Microbiology Society
Subject
Microbiology
Reference125 articles.
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3. Osmostress-Induced Cell Volume Loss Delays Yeast Hog1 Signaling by Limiting Diffusion Processes and by Hog1-Specific Effects
4. Rewiring yeast osmostress signalling through the MAPK network reveals essential and non-essential roles of Hog1 in osmoadaptation
5. Pheromone-Induced Morphogenesis Improves Osmoadaptation Capacity by Activating the HOG MAPK Pathway
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