Explore the fascinating world of autophagy in plant cells - the cellular recycling process that helps plants grow strong roots and survive environmental challenges.
Discover how Pex1p and Pex6p proteins function as cellular tow trucks, clearing peroxisomal import receptors to maintain cellular health.
Discover how BAG3, Hsc70, and CapZ proteins work together as molecular shock absorbers to maintain muscle integrity under mechanical stress.
Discover how deubiquitylases protect cellular junctions and maintain tissue integrity, with implications for cancer and inflammatory disease treatments.
Discover how scientists found ubiquitination occurring inside mitochondria, rewriting our understanding of cellular control systems.
Discover the remarkable janitorial system in red blood cells and the enzyme UBE2O that orchestrates cellular cleanup to create efficient oxygen carriers.
Explore the fascinating world of deubiquitinases (DUBs) - the molecular scissors that regulate protein destruction in cells and their implications for treating cancer and neurodegenerative diseases.
Explore the fascinating world of protein localization and discover how SAUL1 and AtPUB43 proteins create cellular tethers in Nicotiana benthamiana that play crucial roles in plant immunity.
Discover how exercise triggers mitochondrial fusion, fission, and mitophagy - the cellular processes that rebuild your body's energy factories for better health and performance.
Explore the fascinating world of SUMOylation - a crucial post-translational modification that regulates protein function, cellular organization, and human health.