Morning Overview on MSN
AI finds 360,000 DNA knots that quietly control gene switches
Artificial intelligence has just redrawn the map of our genome’s control room, revealing hundreds of thousands of tiny DNA ...
A new CRISPR breakthrough shows scientists can turn genes back on without cutting DNA, by removing chemical tags that act ...
Interesting Engineering on MSN
AI uncovers 360,000 DNA knots that quietly shape how genes turn on and off
AI maps fleeting DNA quadruplexes, revealing paired structures that control genes in healthy cells and cancer.
Researchers at the Jackson Laboratory (JAX), the Broad Institute of MIT and Harvard, and Yale University, have used artificial intelligence (AI) to design thousands of new DNA switches that can ...
CRISPR was one of the most influential breakthroughs of the last decade, but it's still imperfect. While the gene editing tool is already helping people with genetic ailments, scientists are also ...
Current genetic sequencing techniques can provide much information about the genetic makeup and activity in a sample, like a piece of tissue or a drop of blood. But they are unable to reveal where ...
A study published in the journal Cell marks the first reported instance of generative AI designing synthetic molecules that can successfully control gene expression in healthy mammalian cells.
A new gene-editing technique enables the correction of multiple genetic mutations simultaneously, transforming the prospects for millions living with complex inherited diseases, such as cystic ...
Forbes contributors publish independent expert analyses and insights. The period between the 1920s and 1950s was a time of significant progress and exciting discoveries in gene therapy history and ...
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