Inside every cell, thousands of molecular signals collide, overlap, and compensate, obscuring the true drivers of gene expression. Scientists have now developed a way to silence that cellular noise, ...
A proposed function of TADs is to contribute to gene regulation by promoting chromatin interactions within a TAD and by suppressing interactions between TADs. Here, we directly probe the ...
Pharmaceutical Technology on MSN
RNA-targeting small molecules: A new frontier of drug discovery
With big pharma signalling interest in novel RNA-targeted approaches, the term “druggable” is being redefined as technology advances.
A secondary stress signaling pathway in the response to optic axon injury is an unexpectedly strong contributor to both neurodegeneration and axon regenerative potential.
News-Medical.Net on MSN
Study explores how reversible RNA editing could transform future cardiovascular medicine
By Hugo Francisco de Souza Emerging research suggests reversible RNA editing mechanisms may influence heart disease biology while opening new avenues for biomarkers and next-generation cardiovascular ...
10 日on MSN
Why most flu infections fizzle: Fluorescent imaging shows transcription is a key bottleneck
For the first time, scientists have been able to watch the flu virus live as it infects human airway cells. They developed a ...
In the rapidly advancing life science fields, endpoint polymerase chain reaction (PCR), real-time PCR (qPCR), and digital PCR (dPCR) have become indispensa | Ebooks ...
Home > Press release: A tale of coevolution: Nuclear speckles ...
A research team at the University of Würzburg has deciphered another aspect of poxviral gene activation. They have revealed a unique viral mechanism: A molecular ring anchors the viral copying machine ...
Researchers identified how the poxvirus protein VITF-3 forms a molecular ring that clamps onto DNA with viral RNA polymerase, bending it by 90 degrees to initiate gene copying.
AZoLifeSciences on MSN
The life cycle of a protein
A protein’s life is anything but simple. Discover how transcription, translation, folding, modification, and degradation work together to preserve proteome integrity.
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