More than 200 metabolic enzymes, many of which are normally tasked with producing energy in the mitochondria, are also found sitting directly on top of human DNA, according to a study published in ...
Scientists discovered hundreds of energy-making enzymes secretly working on human DNA—revealing a hidden “mini-metabolism” ...
Scientists have uncovered a surprising new way that giant embryonic cells divide—without relying on the classic “purse-string” ring long thought essential for splitting a cell in two. Studying ...
This study presents valuable findings implicating nuclear export in the regulation of protein condensate behaviour and TDP-43 phase behaviour, suggesting a link to pathogenic aggregation in ALS/FTD.
The origin of the nucleus remains hotly debated among scientists, but new imaging and genomic data are shedding light on this billion-year-old mystery.
Some genetic mutations that are expected to completely stop a gene from working surprisingly cause only mild or even no symptoms. Researchers in ...
This important study demonstrates that a peri-nuclear actomyosin network, present in some types of human cells, facilitates kinetochore-spindle attachment of chromosomes in unfavorable locations - ...
Researchers show how LGP2 binds viral RNA ends, moves along the strand, and helps MDA5 form filaments that amplify antiviral signaling. The findings clarify an early defense step and may inform ...
Hydration energetics may become a central tool in engineering safer, longer-circulating, and more effective nanoparticle therapies.
We often hear about bacteria, but what exactly are they? A bacterium is a living organism that consists of a single cell (unicellular). It has ...
Researchers showed that LGP2 binds viral RNA ends and recruits MDA5 molecules to form filament clusters that activate antiviral signaling. Using cryo-EM and high-speed AFM, the team revealed a ...
Study reveals how two proteins cooperate in a key early step of antiviral detection, as reported by researchers at Science ...
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