Explore how ubiquitinated proteomics research using Hep3B cells is transforming our understanding of hepatocellular carcinoma and opening new therapeutic avenues.
Discover how mass spectrometry is revolutionizing our understanding of ubiquitin signaling and its implications for treating diseases from cancer to neurodegenerative disorders.
Explore how protein microarrays revolutionize the identification of ligase substrates and advance proteomic research.
Explore how scientists decode the ubiquitin tagging system in cells using peptide-based immunoaffinity enrichment to understand cellular recycling mechanisms.
Discover how proteogenomics is revolutionizing ALS research by revealing how CCNF gene mutations trigger cell death pathways in motor neurons.
Discover how Reverse Phase Protein Array (RPPA) technology is revolutionizing cancer treatment by identifying precise molecular targets for personalized therapies.
Discover how proteomic profiling is revolutionizing our understanding of treatment-resistant prostate cancer and paving the way for personalized medicine approaches.
Discover how UBE2N and PSME3 proteins serve as potential biomarkers for early colorectal cancer detection through advanced proteomic analysis.
Exploring how chemical biology is unlocking the secrets of ubiquitination, the cellular 'kiss of death' that regulates protein fate and function.
Discover how Ulva prolifera algae survives extreme heat through molecular adaptations, revealed through cutting-edge proteomics research.