The formation of a healthy human heart is a marvel of biological timing and precision, requiring thousands of genes to turn on and off in the right cells at the exact right moment. Now, a ...
Researchers developed a modified DNA platform designed to reduce innate immune activation while maintaining gene expression. The approach could provide durable, redosable genetic therapies without the ...
Jean Fan is in the Center for Computational Biology, Department of Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland 21211, USA. Cellular atlases are unlocking the mysteries of the ...
Researchers from the University of Osaka find that CLK1 is dephosphorylated by PP1 and rephosphorylated by RIOK2 to regulate ...
Deep learning approaches have transformed how scientists predict the activity and function of DNA sequences in the genome. A ...
Ever notice how chatbots often insist on making up an answer instead of admitting defeat? Like a student desperately scribbling nonsense to avoid handing in a blank page, large language models (LLMs) ...
Researchers from the University of California San Diego have created the most detailed map to date of how gene regulation breaks down in human heart failure, revealing how genes are controlled in ...
The use of microarrays to analyse gene expression on a global level has recently received a great deal of attention. There has been much speculation about the power of this approach in the analysis of ...
Upstream Biotechnology unlocks crops’ own defense systems in response to disease and environmental stress without ...
My Adventures with Superman Season 3 SDCC panel lands Friday, July 24, as the full cast discusses the final season just days ...
Scientists at Texas A&M are turning an everyday pick-me-up into a high-tech medical switch. By combining caffeine with CRISPR gene editing, researchers have created a system that allows cells to be ...
A context-aware AI tool predicts how genomic DNA behaves across different cell types, supporting more accurate virtual cell ...