In a first-of-its-kind breakthrough, a team of UBC Okanagan researchers has developed an artificial adhesion system that closely mimics natural biological interactions. Dr. Isaac Li and his team in ...
No "sticky ends"? No problem. A new study by NYU chemists finds that DNA tiles can assemble into 3D structures without the sticky cohesion of hydrogen bonding. This finding, published in Nature ...
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Flexible DNA directs proteins into atomically ordered crystals, overturning crystallization assumptions
In many ways, DNA bonds are more programmable than conventional chemical bonds. By changing DNA's sequence, scientists can dictate which molecules connect and where they connect. That opens the door ...
In a first-of-its-kind breakthrough, a team of researchers has developed an artificial adhesion system that closely mimics natural biological interactions. Their research focuses on understanding how ...
No “sticky ends”? No problem. A new study by NYU chemists finds that DNA tiles can assemble into 3D structures without the sticky cohesion of hydrogen bonding. This finding, published in Nature ...
Dr. Isaac Li, along with students David Bakker and Micah Yang, prepare an experiment as they work to understand counter-intuitive biological interaction—like catch bonds—and how cells physically ...
For decades, scientists have largely relied on painstaking trial and error to coax proteins into crystalline forms. Crystallization enables scientists to determine ...
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