Intramolecular telomeric G-quadruplexes dramatically inhibit DNA synthesis by replicative and translesion polymerases, revealing their potential to lead to genetic change.
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PDIP46 (DNA polymerase δ interacting protein 46) is an activating factor for human DNA polymerase δThe DNA structure and sequence preferences of WRN underlie its function in telomeric recombination eventsA highly conserved G-rich consensus sequence in hepatitis C virus core gene represents a new anti-hepatitis C target.The Werner Syndrome Helicase Coordinates Sequential Strand Displacement and FEN1-Mediated Flap Cleavage during Polymerase δ Elongation.POLD1: Central mediator of DNA replication and repair, and implication in cancer and other pathologiesRegulation of DNA Replication through Natural Impediments in the Eukaryotic Genome.DNA Replication Origins and Fork Progression at Mammalian TelomeresMms1 is an assistant for regulating G-quadruplex DNA structures.Tetrazolylpyrene unnatural nucleoside as a human telomeric multimeric G-quadruplex selective switch-on fluorescent sensor.
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Intramolecular telomeric G-quadruplexes dramatically inhibit DNA synthesis by replicative and translesion polymerases, revealing their potential to lead to genetic change.
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article científic
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article scientifique
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bilimsel makale
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scientific article published on 14 January 2014
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
@en
Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Intramolecular telomeric G-qua ...... ial to lead to genetic change.
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Amrita Machwe
David K Orren
Zhigang Wang
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10.1371/JOURNAL.PONE.0080664
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2014-01-14T00:00:00Z