Deep learning approaches have transformed how scientists predict the activity and function of DNA sequences in the genome. A ...
New research identified a stable ATP-binding human noncoding RNA that could advance RNA therapeutics by revealing new ways to ...
The octopus is a biological oddity. It can use tools, open jars, and its complex nervous system supports as many neurons as a ...
A researcher's guide to spatial transcriptomics: how sequencing- and imaging-based methods work, and how to choose a platform ...
VIVO explains how ddPCR and NGS support viral surveillance in antiviral trials, from detection and quantification to ...
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Low arginine silences immune alert system in cancer and infection, cell study finds
Arginine cancer immune system research from Rockefeller University reveals that low arginine causes ribosomes to stall during ...
With AI, it's now possible for researchers to predict the three-dimensional structures of proteins directly from their amino-acid sequences. But what biologists really want to predict, says Columbia ...
A context-aware AI tool predicts how genomic DNA behaves across different cell types, supporting more accurate virtual cell ...
The transcriptome is the complete set of transcripts in a cell, and their quantity, for a specific developmental stage or physiological condition. Understanding the transcriptome is essential for ...
An interdisciplinary and international team of researchers is using a National Institutes of Health grant to investigate how astrocytes — star-shaped brain cells that support neurons — contribute to ...
Since scientists discovered jumping genes in maize in 1950, they have known that bits of DNA can move around the genome, mostly within the cell nucleus. Scientists have also found evidence of genes ...
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