Interesting Engineering on MSN
AI uncovers 360,000 DNA knots that quietly shape how genes turn on and off
AI maps fleeting DNA quadruplexes, revealing paired structures that control genes in healthy cells and cancer.
A tiny percentage of our DNA—around 2%—contains 20,000-odd genes. The remaining 98%—long known as the non-coding genome, or ...
Agriculture, from the outset, has been made possible by humans tweaking the genes of plants to make them grow faster, produce ...
Penn State researchers discovered that two proteins within the CCR4-NOT complex have opposing effects on mRNA stability.
With a new study in the journal Cell, researchers at Stanford University and Stockholm University have contributed to increased knowledge about gene regulation in human cells. How genes are turned on ...
Cell-free protein synthesis (CFPS) systems are a powerful platform with immense potential in fundamental research, biotechnology, and synthetic biology. Conventional prokaryotic CFPS systems, ...
News-Medical.Net on MSN
Opposing protein forces fine tune mRNA stability in human cells
A newly revealed molecular tug-of-war may have implications for better understanding how a multitude of diseases and ...
AZoLifeSciences on MSN
A molecular tug-of-war shapes gene regulation and disease
A newly revealed molecular tug-of-war may have implications for better understanding how a multitude of diseases and ...
Morning Overview on MSN
This giant microbe packs its DNA in a shocking pattern
Deep in coastal mangroves and even inside our own mouths, biologists are finding that DNA does not always sit in a simple ...
Through a recent notice, the Undergraduate Medical Education Board (UGMEB) of the National Medical Commission (NMC) has ...
Triglia discusses her research at the intersection of genetics, epigenetics, single-cell genomics and computational biology.
Attention disorders such as ADHD involve a breakdown in our ability to separate signal from noise. The brain is constantly ...
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