The database of 200 million protein-structure predictions now includes homodimers, adding new biological relevance.
A new collaboration between EMBL's European Bioinformatics Institute (EMBL-EBI), Google DeepMind, NVIDIA, and Seoul National University has made millions of AI-predicted protein complex structures ...
Can the bend of a banana give us insight into cancer? What does the shape of a rice grain have to do with infertility? The ...
Four-way collaboration brings together world-leading AI and biological expertise to make AI-predicted protein complex structures openly available to ...
Many proteins have a complex architecture that enables biological functions. Molecules can bind to specific sites on a ...
For years, biomolecular condensates were thought to be simple, liquid-like droplets with little internal organization. New ...
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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 revealed how a tryptophan-rich allosteric communication network regulates ...
Every second, hundreds to thousands of molecules move through thousands of nuclear pores in each of your cells. A new high-definition view reveals the machine in action.
If you've ever accidentally sliced yourself on broken glass or a piece of paper, you may have noticed that the bleeding can be hard to stop. Scientists have long wondered how the cascade of events ...
To ensure that protein production in our cells runs smoothly, the protein complex NAC slows down the rate of protein synthesis right at the start. An international research team with significant ...
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