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ChIP-mini technology advances analysis of DNA-protein interactions in pathogenic bacteria
In the pursuit of understanding the pathogenic expression mechanisms of bacteria and the advancements in biofoundry technology, identifying and analyzing protein-DNA binding sites is crucial.
Colibactin is a powerful toxin produced by Escherichia coli and other bacteria living in the human gut. This highly unstable ...
Bacteria possess unique traits with great potential for benefiting society. However, current genetic engineering methods to harness these advantages are limited to a small fraction of bacterial ...
Researchers from Durham University, Jagiellonian University (Poland) and the John Innes Centre have achieved a breakthrough in understanding DNA gyrase, a vital bacterial enzyme and key antibiotic ...
Our cells harbor a DNA detector termed cGAS to inform the immune system of viral and bacterial infections, cell death, as well as transformation during cancer. Researchers led by Ikerbasque Research ...
Transposons are critical drivers of bacterial evolution that have been studied for many decades and have been the subject of Nobel Prize winning research. Now, researchers from Cornell University have ...
A new DNA sequencing technique that delivers faster and more accurate bacterial infection diagnoses could be implemented nationwide. The method, developed by the Medicines and Healthcare products ...
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