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How a tryptophan-rich allosteric communication network helps activate a major drug target receptor
A multinational research team led by researchers at Institute of Science Tokyo, RIKEN, and the University of Toronto has ...
Researchers capture first-of-its-kind video of dynein–Lis1 protein interaction, supporting future drug development for neurological disorders. Our cells rely on microscopic highways and specialized ...
Four-way collaboration brings together world-leading AI and biological expertise to make AI-predicted protein complex structures openly available to the global scientific community.
The Human Domainome 1—the largest library of human protein variants—reveals the cause of certain genetic disorders, paving the way for personalized medicines. “We measured every possible mutation in ...
These epidemiologic patterns highlight the limitations of focusing on genetics alone. Although the Human Genome Project greatly expanded our understanding of hereditary contributions to disease, genes ...
Early in the pandemic, most research, including our own, focused on designing drugs that could block the virus's spike protein. This was a logical first step, but as we've seen, the virus is a moving ...
Researchers have used machine learning and supercomputer simulations to investigate how tiny gold nanoparticles bind to blood proteins. The studies discovered that favorable nanoparticle-protein ...
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