IEEE Spectrum on MSN
AlphaGenome deciphers non-coding DNA for gene regulation
Deep-learning model decodes the regulatory effects of DNA changes ...
Morning Overview on MSN
AlphaGenome cracks the dark DNA code controlling gene switches
For decades, biologists have known that the instructions for life are written in DNA, yet the vast majority of those letters seemed to sit in the dark, doing little that was obvious. Now a new ...
Non-coding DNA variants contribute to acute lymphoblastic leukemia (ALL) chemotherapy resistance. St. Jude Children's Research Hospital scientists have identified specific DNA variants in the ...
Researchers have revealed that so-called ‘junk DNA’ contains powerful switches that help control brain cells linked to Alzheimer’s disease. When people picture DNA, they often imagine a set of genes ...
Fixing gene defects with designer DNA is on the horizon after Google DeepMind launched a pioneering new AI tool.
Model predicts effect of mutations on sequences up to 1 million base pairs in length and is adept at tackling complex ...
Researchers have developed a method to swiftly screen the non-coding DNA of the human genome for links to diseases that are driven by changes in gene regulation. The technique could revolutionize ...
Artificial intelligence has gotten a bad reputation lately, and often for good reason. But a team of scientists at Google’s ...
There are some genes that can promote cancer; they are sometimes called oncogenes, and in tumor cells, mutations are often found in these genes. When they are functioning normally, oncogenes are often ...
(L to R) Co-first author Jackson Mobley, PhD, corresponding author Daniel Savic, PhD, and co-first author Kashi Raj Bhattarai, PhD, all of the St. Jude Department of Pharmacy and Pharmaceutical ...
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