Exploring how pevonedistat induces anaphase catastrophe and apoptosis in T-cell lymphoma by inhibiting NEDD8-activating enzyme (NAE).
Discover how prostate cancer disables the PMEPA1-NEDD4 molecular brake system that regulates androgen receptor stability, leading to treatment resistance.
Exploring the emerging role of N-terminal ubiquitination in cellular regulation, its mechanisms, biological significance, and research tools.
Exploring the critical role of USP47 in cancer metastasis through epithelial-mesenchymal transition (EMT) and its potential as a therapeutic target.
Exploring the roles of HLTF and SHPRH proteins in DNA damage repair and their implications in cancer prevention and treatment.
Discover how SENP5 promotes esophageal squamous cell carcinoma growth through the NF-κB-SLC1A3 axis and its potential as a therapeutic target.
A comprehensive bibliometric analysis of mitochondrial research in Parkinson's disease, exploring growth trends, key discoveries, and future directions.
Explore how PROTACs are revolutionizing medicine by targeting previously 'undruggable' proteins for degradation, with clinical breakthroughs in cancer and neurodegenerative diseases.
Explore how systems biology is transforming Parkinson's disease research through network analysis, multi-omics integration, and novel therapeutic approaches.
New research reveals how Zoledronic acid dismantles EMT's machinery by targeting NEDD9, silencing prostate cancer's invasive voice.