Researchers developed a cost-effective genome assembly method, assembling over 1,000 human genomes and identifying 405.3 million non-reference sequences. The study provides a critical infrastructure for medical and population genetics research.
A team at Westlake University developed a high-throughput platform for engineering fast-acting covalent protein therapeutics, overcoming a fundamental limitation in the field. The platform enables rapid and irreversible target engagement with improved efficacy and safety.
A new type of smart polymer has been created that mimics the flexibility and stiffness of medieval chainmail. The material, made up of interlocking rings, can bend without breaking while maintaining exceptional stiffness, making it a potential game-changer for next-generation protective gear.
Two groundbreaking studies provide structural and functional insights into the chloroplast protein import system. The research revealed the assembly, function, and evolutionary diversity of the Ycf2-FtsHi complex, a crucial player in preprotein translocation.