Researchers from UNSW Sydney have discovered that a particular transposable element, or jumping gene, in the genome has a profound effect on the immune response to virus infection. The findings in ...
Researchers from the University of New South Wales (UNSW) Sydney report they have discovered that a particular transposable element in the genome has an effect on the immune response to virus ...
To understand how organisms are related, researchers use molecular information to construct phylogenetic trees. Most of the time, scientists use thousands of protein-coding sequences to determine ...
New research from scientists at Cleveland Clinic’s Genome Center and their collaborators at other institutions describes a pathway that human herpes simplex-1 (HSV-1) can use to contribute to the ...
Mammalian genomes have been colonised by transposable elements (TEs), so called ‘genetic parasites’, which occupy ~ 50% of genomic DNA and harbour the potential to propagate, resulting in genetic ...
Study uncovers how transposable elements in Alzheimer's-affected brains could hold the key to new therapeutic approaches, as scientists uncover the genetic links behind these molecular disruptions.
Researchers were able to identify changes in the accessibility (that is, the 'readability') of transposable elements. To do this, the researchers used an approach combining various sets of multiomics ...
Regarded historically as genomic parasites, transposable elements (TEs) have now been recognized as significant contributors to cellular identity and function, especially in immune regulation.
New research suggests that transposable elements in various cancers potentially may be used to direct novel immunotherapies to tumors that don't typically respond to immune-based treatments. Jumping ...
In healthy cells, transposable elements (TEs) are typically inactivated by methylation. But in cancer cells, these elements can become demethylated, enabling them to be expressed (1). Some ...
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