Explore how yeast mutants with defects in carbon assimilation regulation reveal sophisticated metabolic control systems in Saccharomyces cerevisiae.
Discover how baker's yeast uses the MIG1 repressor to control GAL genes and switch between sugar sources with remarkable efficiency.
Explore how baker's yeast senses glucose through sophisticated signaling pathways and what this reveals about cellular decision-making.
Discover how Saccharomyces cerevisiae uses an interconnected network of glucose signaling pathways to regulate cellular processes and resource management.
Discover how a new scientific model reveals the secret metabolic dance inside yeast cells during glucose pulses and its implications for bioengineering and human health.
Discover how Candida intermedia yeast regulates glucose transport through sophisticated two-tiered systems for optimal survival and biofuel applications.
Explore how starved yeast cells regulate their aerobic metabolism when glucose and ammonium ions are added, revealing fundamental cellular energy management principles.
Explore the fascinating process of yeast spore germination in Saccharomyces cerevisiae - from dormancy to awakening through global gene expression patterns.
Discover how yeast cells regulate their PMA1 gene in response to glucose, controlling the proton pump that powers cellular functions through sophisticated transcriptional mechanisms.
Discover how Saccharomyces cerevisiae uses the Snf3-HXT6 pathway to sense glucose and regulate its metabolism through an elegant cellular communication system.