DNA Replication
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Q&A: Illuminating a critical step in initiating DNA replication in eukaryotes
Brandt Eichman and Walter Chazin, professors of biochemistry, have worked together to provide a better understanding of how exactly DNA replication is initiated in eukaryotes. Using Vanderbilt’s state-of-the-art instrumentation in the Center for Structural Biology’s Cryo-Electron Microscopy Facility, Eichman, Chazin and their colleagues provided detailed visualizations of a multi-functional protein in action, which sheds light on how DNA replication is initiated in humans. Read MoreMarch 15, 2024
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Combining unique methods, Kuriyan lab discovers new protein functions; explores physical space of proteins
Combining deep mutagenesis and cryo-EM reveals new conformational state of a protein responsible for high-speed DNA replication. The research builds on growing theories of molecular evolution. Read MoreFebruary 6, 2024
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Probing DNA damage repair
After discovering a new mechanism for DNA damage repair last year, Vanderbilt biochemists now provide direct evidence for how it works. Read MoreJune 18, 2020
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Completing DNA synthesis
James Dewar and colleagues have identified a role for the enzyme topoisomerase II in reducing replication errors during the final stage of DNA synthesis. Read MoreOctober 21, 2019
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A catalog of DNA replication proteins
Vanderbilt scientists have identified 593 proteins that are enriched at sites of DNA duplication and chromatin packaging of newly synthesized DNA. Read MoreOctober 3, 2019
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Repriming replication roadblocks
New findings shed light on how enzymes that replicate DNA skip over mutations that might cause cancer and restart DNA synthesis further away. Read MoreJune 12, 2017
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Team identifies ‘switch’ involved in DNA replication
DNA replication is an extraordinarily complex multi-step process that makes copies of the body’s genetic blueprint. It is necessary for growth and essential to life. Now researchers at the California Institute of Technology (Caltech) and Vanderbilt University have found evidence that one of those steps may involve the telephone-like transmission of electrical signals regulated by a chemical “switch.” Read MoreFebruary 23, 2017
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DNA damage response protein
Vanderbilt researchers have determined that a previously uncharacterized protein responds to DNA replication stress and has an essential role in maintaining the integrity of the genome. Read MoreOctober 21, 2016
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Mechanism of a DNA repair protein
Vanderbilt investigators have discovered details about the mechanism of an important DNA repair protein that maintains genome stability. Read MoreApril 15, 2016
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Copying chromosome caps
Telomeres – the caps on the end of chromosomes – are a source of stress for a particular protein involved in copying DNA, a new study reports. Read MoreJanuary 8, 2016