An artificial intelligence model predicts how brain immune cells react to RNA and DNA nanoparticles, helping scientists design safer and more effective nucleic acid therapies faster.
Within each cell, there is a constant struggle between life-sustaining molecules and molecules that could hasten its demise.
ETH Zurich scientists have created “MetaGraph,” a revolutionary DNA search engine that functions like Google for genetic data. By compressing global genomic datasets by a factor of 300, it allows ...
Salk Institute researchers determine the structure of HIV protein during a newly discovered function, enabling the ...
They observe how the mobile DNA LINE-1 copies its sequence in human cells, revealing the precise mechanism of the ORF2p gene.
A better understanding of protein glycosylation offers insights into disease mechanisms and helps improve therapeutic medicines.
The rate of HIV infection continues to climb globally. Around 40 million people live with HIV-1, the most common HIV strain.
Could yeast and humans be any more different? Going by looks alone, probably not. But peering into our genomes reveals ...
Researchers used cryo-EM to study how the HIV enzyme integrase arranges in 3D to slip its DNA into the host genome and pack ...
Understanding molecular diversity is fundamental to biomedical research and diagnostics, but existing analytical tools ...