Explore RGC-32, the fascinating cellular regulator with dual roles in cancer progression and suppression, and its potential as a therapeutic target.
Discover how Bacillus subtilis regulates its cydABCD operon through ResD, CcpA, and Rex proteins to optimize respiration in changing environments.
Scientists discover how 4EBP1 and 4EBP2 proteins help cancer cells survive energetic stress by regulating fatty acid synthesis, revealing new therapeutic targets.
Explore the fascinating science of cerebral energy metabolism - how your brain powers itself, what happens when that power supply is threatened, and the scientists working to keep our cognitive engines running.
A groundbreaking method for creating insulin-producing cells that offers new hope for diabetes treatment through pancreatic progenitor expansion.
Explore how synthetic microbial communities (SynComs) are transforming medicine, agriculture, and environmental science through purposefully designed teams of microorganisms.
Explore the fascinating science behind glucokinase, the body's glucose sensor, and how its mutations cause MODY2 diabetes through detailed structural and functional analysis.
Exploring how proteomics reveals the molecular mechanisms behind bariatric surgery's dramatic effects on glycemic regulation and diabetes remission.
Discover how the H19 long non-coding RNA molecule contributes to diabetic hyperglycemia by regulating glucose production in the liver.
Discover the ATPome - the comprehensive network of cellular components that regulate ATP, the universal energy currency of life, and its implications for disease treatment.