Discover how cancer cells use phenotypic plasticity to resist tyrosine kinase inhibitors by reprogramming cytoskeleton organization through cadherin-catenin and integrin pathways.
Discover how the thromboxane A2 pathway controls migration and metastasis in triple-negative breast cancer cells, offering new therapeutic targets.
Explore how the postsynaptic cytoskeleton regulates brain development, plasticity, and neurological disorders through its dynamic structural framework.
Explore the scientific toolkit for detecting protein-protein interactions in living cells, from traditional methods to cutting-edge techniques like AP-MS and proximity labeling.
Discover how unbiased phosphoproteomics is revealing the hidden signaling network of the pseudorabies virus US3 protein and its implications for antiviral strategies.
Explore how cyclic AMP (cAMP) directs the functions of key cells in the ovary to produce essential steroids that control the menstrual cycle and prepare the body for pregnancy.
Exploring how the EWS-FLI fusion protein drives metastasis in Ewing sarcoma through gene expression reprogramming and cellular behavior changes.
Discover how FTIR spectroscopy detects cervical cancer through molecular vibrations and cytoskeleton rearrangement patterns
Discover how single-cell confinement methods are revolutionizing our understanding of the plant cytoskeleton, revealing the intricate dance of cellular structures that shape plant growth and development.
Explore the fascinating world of cell surface GRP78 and its interactions with CDNF and MANF proteins, revealing new therapeutic potential for neurodegenerative diseases.