A genome-wide CRISPR study maps 331 genes essential for early brain development, identifying PEDS1 as a new ...
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The first 3D mapping of the human genome

The genetic heritage is not a simple, static list inside the cell nucleus. It unfolds into a dynamic architecture whose ...
One of the most detailed 3D maps of how the human chromosomes are organized and folded within a cell's nucleus is published in Nature.
Scientists from Oxford's Radcliffe Department of Medicine have achieved the most detailed view yet of how DNA folds and functions inside living cells, revealing the physical structures that control ...
Innovative study of DNA's hidden structures may open up new approaches for treatment and diagnosis of diseases, including cancer. DNA is well-known for its double helix shape. But the human genome ...
Scientists map the true nature of the genome with its loops and folds in four dimensions across time and space.
Cutting-edge DNA mapping technology identified new genetic information that can help researchers decipher more genetic diseases, a new study found. The research will be presented at the Pediatric ...
DNA's double helix has long stood as the symbol of life’s code. But buried within the genome lies a deeper level of complexity. One of the more intriguing discoveries in recent years is the i-motif—a ...
This image depicts the detection of structural variants (SVs) at low sequencing coverage in both unique and repetitive regions by genomic proximity mapping (GPM), compared with other SV-calling ...
Researchers have developed a comprehensive atlas that maps DNA methylation—a critical chemical modification governing gene activity—across 39 human cell types, revealing a complex landscape of ...