The process of DNA replication relies on the coordinated action of a ring‐shaped sliding clamp and its specialised loader complexes. Sliding clamps, typified by proliferating cell nuclear antigen ...
Humans and baker's yeast have more in common than meets the eye, including an important mechanism that helps ensure DNA is copied correctly, reports a pair of studies. The findings visualize for the ...
Cells have evolved careful checks to ensure DNA is copied only once, but how they switch on replication at the right moment ...
Eukaryotic DNA replication is initiated at multiple origins through a tightly regulated sequence of events: origin licensing, helicase activation and assembly of the replisome. The replicative ...
Scientists have discovered that a protein once thought to simply help load a factor necessary for the copying of DNA, actually plays a key role in ensuring fast and reliable replication—an insight ...
Humans and baker's yeast have more in common than meets the eye, including an important mechanism that helps ensure DNA is copied correctly, reports a pair of studies published in the journals Science ...
A research team at the University of Würzburg has deciphered another aspect of poxviral gene activation. The study reveals a unique viral mechanism: a molecular ring anchors the viral copying machine ...
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A research team at the University of Würzburg has deciphered another aspect of poxviral gene activation. The study reveals a unique viral mechanism: a molecular ring anchors the viral copying machine ...
DNA replication is a tightly controlled process that copies the genetic code, allowing its instructions to be conveyed from one generation of cells to the next. In diseases like cancer, these ...
DNA replication is a complex process with many moving parts. In baker's yeast, the molecular complex Ctf18-RFC keeps parts of the replication machinery from falling off the DNA strand. Human cells use ...