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University of Warwick


Researchers find synthetic molecules that may literally be the key to 'locking away' unwanted DNA

Scientists at the University of Warwick have created a large synthetic molecule that binds to the major groove of DNA, causing it to coil up and resembling how chromosomes package DNA. This breakthrough could enable precise control over gene expression and improve treatments for diseases by delivering drugs directly to specific cells.

SourceUniversity of Warwick·JournalProceedings of the National Academy of Sciences·DateApr 15, 2002

Black Hole research shows English football (soccer) is 30 times more boring than football (soccer) games in rest of world

A study by University of Warwick researchers found that English football games are characterized by fewer high-scoring matches compared to the rest of the world. In contrast, top division matches globally exhibit a much higher frequency of high scores, suggesting a significant difference in the level of excitement between the two.

Formal Opening Of XMaS In Grenoble

The new beam line will provide opportunities for UK scientists to study the properties of magnetic materials that could impact on computers, electric vehicles, and storage media. The instrument generates intense X-rays, allowing for detailed analysis of atomic and magnetic structures.

Chemists Compute Answers To The Origin Of Gout

Chemists at the University of Warwick's Computational Chemistry Group have made significant discoveries about the biological reaction that causes gout. They found that a hydroxide ion is involved in the catalysis process, rather than an oxygen atom, which could lead to the development of inhibitors for the illness.

Pruning Plants With DNA

A new research program using Arabidopsis as a model aims to improve plant branching patterns through DNA manipulation. This could lead to higher-quality wood and reduced harvesting time for eucalyptus and poplar trees, benefiting the paper and construction sectors.