Researchers at the Centre for Genomic Regulation (CRG) reveal that metabolic enzymes known for their roles in energy production and nucleotide synthesis are taking on unexpected "second jobs" within ...
Studies suggest the cell is more interconnected than previously thought, opening up "exciting possibilities for science and medicine." ...
Metabolic enzymes, typically associated with energy production, are now discovered to also play essential roles in the nucleus, such as orchestrating cell division and DNA repair. This breakthrough, ...
Researchers unveil the inner mechanisms of the most intricate and complex molecular machine in human biology. Scientists at the Centre (CRG) in Barcelona have developed the first comprehensive ...
Researchers have created the first blueprint of the human spliceosome, the most complex and intricate molecular machine ...
Researchers at the Centre for Genomic Regulation (CRG) have created the first blueprint of the human spliceosome, the complex molecular machine that edits genetic messages transcribed from DNA ...
The outline of this labyrinthine cellular machinery, the most complex in humans, opens up new ways of designing treatments ...
Researchers have created the first blueprint of the human spliceosome, the most complex and intricate molecular machine in human biology. The vast majority of human genes -- more than nine in ten -- ...
Researchers at the Centre for Genomic Regulation (CRG) reveal that metabolic enzymes known for their roles in energy production and nucleotide synthesis are taking on unexpected "second jobs" within ...
Researchers at the Centre for Genomic Regulation (CRG) in Barcelona have created the first blueprint of the human spliceosome, the most complex and ...
Researchers at the Centre for Genomic Regulation (CRG) reveal that metabolic enzymes known for their roles in energy ...
A study shows how scientists can control cell division on demand outside of a living system. The work is a significant leap forward that can enhance our grasp of human biology and disease.