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The DNA of human cells consists of a sequence ... Only when the backup is also switched off do they lose the ability to repair the genetic material. Sooner or later, the damage accumulates to a point ...
An INRS research team has identified a new family of enzymes that can make precise cuts in single-stranded DNA. A few years ago, the introduction of CRISPR technology marked a significant breakthrough ...
A research team has unveiled a crucial mechanism that helps regulate DNA damage repair, with important implications for improving cancer treatment outcomes. The result was published in Cell Death ...
Explore the latest findings on genetic networks and their role in DNA repair, opening new avenues for cancer therapies.
For the first time, Professor Veyrier and his team at INRS have discovered a family of enzymes that can cut specific sequences in single-stranded DNA. These enzymes, called site-specific ...
organisms have evolved a number of pathways to repair DNA damage Mutations in genes coding for proteins involved in DNA repair pathways can lead to abnormal phenotypes, including neurological ...
A few years ago, the advent of technology known as CRISPR was a major breakthrough in the scientific world. Developed from a ...
Researchers from the University of Birmingham have uncovered answers that provide the detail to explain two specific DNA repair processes that have long been in question. The publication of two papers ...
A new study suggests that targeting the protein alpha-synuclein could be a possible new target for treating melanoma.
The DNA of human cells consists ... do they lose the ability to repair the genetic material. Sooner or later, the damage accumulates to a point where survival is no longer possible.
Researchers have uncovered answers that provide the detail to explain two specific DNA repair processes that have long been in question. Researchers from the University of Birmingham have ...
Efficient DNA repair mechanisms have evolved to ensure the ... India. The author declared no competing interests.