Discover how the cell's ubiquitin system controls RAP80 protein degradation through the cell cycle to prevent cancer and maintain genomic stability.
Discover groundbreaking approaches to combat therapy-resistant gastrointestinal cancer cells through cancer stem cell targeting, reprogramming, and innovative microenvironment strategies.
Explore the pivotal 1989 ICLP conference in Lisbon that shaped modern AI through logic programming breakthroughs in parallel execution, constraint programming, and practical applications.
Explore the revolutionary CRISPR/Cas9 technology - from its accidental discovery in bacteria to its Nobel Prize-winning potential for gene editing and therapy.
Discover how ACVR1 and PIK3CA mutations collaborate to drive diffuse midline gliomas in children, and the promising research using genetically engineered mouse models to develop new treatments.
Discover how distinct 5-methylcytosine profiles in mouse brown adipose tissue could unlock new obesity treatments through RNA methylation research.
Discover how vitamin B1 (thiamine) reveals hidden cellular signaling mechanisms beyond its traditional role as a coenzyme in energy metabolism.
Explore the groundbreaking work of Torbjörn Caspersson, the pioneer who revolutionized cell biology through UV microspectrophotometry and nucleic acid research.
Explore the fascinating world of biological polymers - DNA, RNA, proteins, and polysaccharides - and discover how these molecular chains form the foundation of all life on Earth.
Explore how bioinformatics bridges biology and computer science to decode DNA, advance medicine, and transform our understanding of life itself.