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Journal Article
Nucleic acids research, ISSN 1362-4962, 2019, Volume 47, Issue 13, pp. 6932 - 6945
Journal Article
Journal Article
Nature (London), ISSN 1476-4687, 2014, Volume 510, Issue 7504, pp. 293 - 297
Journal Article
Nature chemistry, ISSN 1755-4349, 2016, Volume 8, Issue 6, pp. 556 - 562
.... Here we report the development of a polymerase-evolution system and its use to evolve thermostable polymerases that efficiently interconvert C2'-OMe-modified oligonucleotides and their DNA... 
DNA - chemistry | DNA Replication - physiology | Aptamers, Nucleotide - chemistry | Models, Molecular | DNA-Directed DNA Polymerase - chemistry | DNA-Directed DNA Polymerase - metabolism | Hot Temperature | Nucleic Acid Conformation | Oligonucleotides - chemical synthesis | Evolution, Molecular
Journal Article
1995, ISBN 0123721830, 391
PCR Strategies expands and updates the landmark volume PCR Protocols. It is a companion laboratory manual that provides a completely new set of up-to-date... 
Polymerase chain reaction | Methodology
eBook
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2012, Volume 336, Issue 6079, pp. 341 - 344
Journal Article
The Journal of biological chemistry, ISSN 0021-9258, 01/2016, Volume 291, Issue 3, pp. 1472 - 1480
The formation of a replication loop on the lagging strand facilitates coordinated synthesis of the leading-and lagging-DNA strands and provides a mechanism for recycling of the lagging- strand DNA polymerase... 
LAGGING-STRAND POLYMERASE | PROTEIN | FORK | SLIDING-CLAMP | MECHANISM | SINGLE-MOLECULE | BIOCHEMISTRY & MOLECULAR BIOLOGY | COMPLEXES | LOOP | RESIDUES | PROCESSIVITY | DNA, Bacterial - metabolism | DNA Primase - metabolism | Multienzyme Complexes - metabolism | DNA, Bacterial - chemistry | DNA-Directed DNA Polymerase - chemistry | Viral Proteins - metabolism | DNA-Directed DNA Polymerase - genetics | Escherichia coli - virology | Thioredoxins - genetics | Bacteriophage T7 - enzymology | Gene Deletion | Escherichia coli - metabolism | DNA Primase - genetics | DNA - biosynthesis | Thioredoxins - metabolism | Nucleic Acid Conformation | Binding Sites | Bacteriophage T7 - chemistry | DNA Primase - chemistry | Recombinant Proteins - metabolism | Viral Proteins - chemistry | DNA, Single-Stranded - metabolism | DNA, Viral - metabolism | Models, Molecular | Recombinant Proteins - chemistry | DNA Replication | Escherichia coli Proteins - metabolism | DNA - metabolism | DNA, Single-Stranded - chemistry | Multienzyme Complexes - chemistry | DNA, Viral - chemistry | DNA - chemistry | Bacteriophage T7 - metabolism | Escherichia coli Proteins - genetics | Protein Conformation | DNA-Directed DNA Polymerase - metabolism | Kinetics | Index Medicus | DNA and Chromosomes | DNA replication | pre-steady-state kinetics | DNA-protein interaction | bacteriophage | enzyme kinetics
Journal Article
Nature (London), ISSN 1476-4687, 2014, Volume 507, Issue 7490, pp. 124 - 128
Journal Article
PloS one, ISSN 1932-6203, 03/2019, Volume 14, Issue 3, p. e0213383
Replicative DNA polymerases are frequently stalled at damaged template strands. Stalled replication forks are restored by the DNA damage tolerance (DDT... 
POLYMERASE-DELTA | CELLS | RECOMBINATION | REPAIR | ETA | MECHANISM | UV PHOTOPRODUCTS | MULTIDISCIPLINARY SCIENCES | BREAKS | GENE CONVERSION | FRAGILE SITE STABILITY | Multifunctional Enzymes - genetics | DNA Primase - deficiency | Humans | Multifunctional Enzymes - deficiency | DNA Primase - metabolism | Templates, Genetic | Multifunctional Enzymes - metabolism | DNA-Directed DNA Polymerase - deficiency | DNA-Directed DNA Polymerase - genetics | DNA Polymerase beta - deficiency | Nuclear Proteins - deficiency | DNA Primase - genetics | DNA - biosynthesis | DNA Polymerase beta - metabolism | Nuclear Proteins - genetics | DNA Polymerase beta - genetics | Cell Line | Avian Proteins - metabolism | DNA Replication | Nuclear Proteins - metabolism | Gene Knockout Techniques | DNA - genetics | Genes, Immunoglobulin | Animals | Avian Proteins - deficiency | Chickens | DNA Repair | DNA Damage | DNA-Directed DNA Polymerase - metabolism | Avian Proteins - genetics | Usage | Nucleotide sequence | DNA polymerases | Genetic aspects | Research | Brewer's yeast | DNA repair | DNA damage | DNA | Neomycin | Genetic research | DNA synthesis | Cells | Cell culture | Health sciences | Hydrogen peroxide | DNA polymerase | Poultry | Homologous recombination | Homology | Genomes | Compounds | Replication forks | Mammalian cells | Damage tolerance | Proteins | Pathways | Cell cycle | Life sciences | Chemical synthesis | Chromosomes | Deoxyribonucleic acid--DNA | Medical research | Phenotypes | Immunoglobulins | U.V. radiation | Immunological tolerance | Crossovers | Switching | Chemical damage | Mutants | Medicine | DNA biosynthesis | Organic chemistry | Sensitivity | Lymphocytes B | Pharmacy | Cell lines | Sensitivity enhancement | In vivo methods and tests | Gene conversion | DNA-directed DNA polymerase | Cancer | Life Sciences | Biochemistry, Molecular Biology | Genomics | Deoxyribonucleic acid
Journal Article