Discover how synthetic T-cell receptor-like proteins behave as Janus particles in solution, revolutionizing cancer treatment and protein engineering.
Explore how scientists are redesigning serine proteases using AI and rational engineering approaches to develop new therapeutics and biotechnology applications.
Discover how scientists are engineering ubiquitin to modulate the ubiquitin-proteasome system, opening new therapeutic possibilities for cancer, neurodegenerative diseases, and more.
Discover how coupled protein and probe engineering enables selective inhibition and labeling of caspases, overcoming long-standing challenges in cell death research.
Discover how Asn70 and Pro71 in mitochondrial cytochrome c represent a structural master key essential for life's energy production, revealed through protein engineering.
Explore how N-terminal mRNA-protein fusion technology is revolutionizing evolutionary protein engineering and accelerating drug discovery.
Discover how Shuffle Optimizer is transforming protein engineering by optimizing DNA shuffling techniques for creating improved enzymes, antibodies, and therapeutic proteins.
Explore how scientists are engineering soluble T-cell receptors to create revolutionary cancer therapies that can detect diseases previously invisible to conventional treatments.
Explore how protein engineers transform Subtilisin BPN' through strategic mutations to create remarkably thermostable enzymes with industrial and medical applications.
Discover how scientists are engineering novel protein communication networks through membrane-mediated interactions, revolutionizing cellular biology and medical applications.