A genomic atlas of Nematostella vectensis reveals how primitive animals created multiple cell types millions of years ago, ...
DNA doesn’t just sit still inside our cells — it folds, loops, and rearranges in ways that shape how genes behave.
A whole-genome sequencing approach shows early promise over current commercial methods for identifying more patients likely ...
The collection of high-quality genomic DNA remains a major barrier in pediatric and neurodevelopmental research, particularly ...
In its effort to correlate genomic structure with gene function, the 4D Nucleome Consortium (4DN), led by Job Dekker, Ph.D., ...
DNA methylation is a highly studied epigenetic modification that regulates genome function and plays key roles in development and disease 1. It is linked to a broad range of conditions, including ...
The scientists at deCODE Genetics, a subsidiary of Amgen, sought to deepen the understanding of cis-acting influences of sequence variants on CpG methylation. In the study, the scientists were able to ...
The genome is more than a linear code; it is a dynamic structure whose three-dimensional folding dictates how genes are regulated. Traditional sequencing technologies capture base-level variation but ...
Accurately predicting complex agronomic traits remains a major bottleneck in crop breeding. This study demonstrates how ...
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TB Bacteria Hide Foreign DNA Inside Their Genome
Researchers discovered how the Lsr2 protein silences foreign DNA in tuberculosis bacteria. By forming protein condensates on ...
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