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Colloids and Surfaces A: Physicochemical and Engineering Aspects, ISSN 0927-7757, 09/2015, Volume 481, pp. 72 - 79
The melting temperature of probe-target nucleic acid hybrids plays an important role in sensor performance. This study employed surface plasmon resonance (SPR)... 
RNA:DNA hybridization | Plant virus | Melting temperature | Surface plasmon resonance | BIOSENSORS | PERSPECTIVE | STABILITY | SEQUENCE | CHEMISTRY, PHYSICAL | DUPLEXES | SURFACE-PLASMON RESONANCE | PATHOGEN DETECTION | RNA | Genetic research | DNA | Sensors | Analysis | Genomics
Journal Article
2009, ISBN 9789812835604, viii, 85
Book
PLoS ONE, ISSN 1932-6203, 01/2017, Volume 12, Issue 1, pp. e0170719 - e0170719
Translesion DNA synthesis (TLS), facilitated by low-fidelity polymerases, is an important DNA damage tolerance mechanism. Here, we investigated the role and... 
STATIONARY-PHASE MUTAGENESIS | REPAIR | GRAM-NEGATIVE BACTERIA | REPLICATION | SOS | MULTIDISCIPLINARY SCIENCES | ESCHERICHIA-COLI | AGENTS | ADAPTIVE RESPONSE | GENE-PRODUCT | Temperature | DNA, Bacterial - metabolism | Species Specificity | DNA Repair - genetics | DNA-Directed DNA Polymerase - deficiency | Recombinant Fusion Proteins - metabolism | Alkylation | DNA Adducts - metabolism | DNA-Directed DNA Polymerase - genetics | DNA Glycosylases - deficiency | Methylnitronitrosoguanidine - pharmacology | Pseudomonas aeruginosa - enzymology | Pseudomonas putida - drug effects | Drug Resistance, Bacterial - genetics | DNA Glycosylases - metabolism | Genes, Reporter | Promoter Regions, Genetic | Pseudomonas putida - genetics | Bacterial Proteins - genetics | Mutagens - pharmacology | Pseudomonas putida - enzymology | Pseudomonas aeruginosa - drug effects | Bacterial Proteins - physiology | Phenotype | DNA, Bacterial - genetics | Rifamycins - pharmacology | Pseudomonas aeruginosa - genetics | Recombinant Fusion Proteins - genetics | DNA-Directed DNA Polymerase - physiology | DNA Damage | Mutation | Methyl Methanesulfonate - pharmacology | Lac Operon | DNA damage | DNA polymerases | DNA synthesis | Pseudomonas aeruginosa | Genetic aspects | Research | Pseudomonas putida | N-Methyl-N'-nitro-N-nitrosoguanidine | DNA polymerase | Toxicity | Cytotoxicity | Biochemistry | Biology | Methyl methanesulfonate | DNA repair | Base excision repair | Damage tolerance | Proteins | E coli | DNA methylation | Bacteria | Genetics | Chemical synthesis | Deoxyribonucleic acid--DNA | Low temperature | Cell survival | Survival | Mutants | DNA biosynthesis | Polymerase | Tuberculosis | Mutagenesis | Methylation | DNA-directed DNA polymerase | Index Medicus | Deoxyribonucleic acid | DNA
Journal Article
PLoS ONE, ISSN 1932-6203, 12/2016, Volume 11, Issue 12, p. e0169259
We describe a gentle and rapid method to purify the intact multiprotein DNA replication complex using free flow electrophoresis (FFE). In particular, we... 
IN-VITRO | MULTIDISCIPLINARY SCIENCES | TCA CYCLE ENZYMES | RESOLUTION | CELL-CYCLE | SEPARATION | IDENTIFICATION | SYNTHESOME | MEMBRANE-PROTEIN COMPLEXES | MASS-SPECTROMETRY | LIVING CELLS | DNA-Directed DNA Polymerase - isolation & purification | DNA Polymerase III - isolation & purification | DNA-Directed DNA Polymerase - analysis | Humans | DNA Polymerase II - isolation & purification | Cell Extracts - chemistry | DNA Replication | Proliferating Cell Nuclear Antigen - analysis | Replication Protein A - isolation & purification | Simian virus 40 - genetics | Replication Origin - genetics | Replication Protein C - isolation & purification | Cell Line, Tumor | Antigens, Viral, Tumor - genetics | Electrophoresis - methods | HeLa Cells | Multienzyme Complexes - analysis | DNA Polymerase I - isolation & purification | Multienzyme Complexes - isolation & purification | DNA Topoisomerases, Type I - isolation & purification | Electrophoresis | DNA replication | Usage | Research | Mass spectrometry | Drugs | DNA polymerase | Antigen T (large) | Viruses | Biochemistry | Biosynthesis | DNA repair | Gene sequencing | Proteins | Spectrometry | Cell cycle | Proliferating cell nuclear antigen | Replication factor C | Free flow | Deoxyribonucleic acid--DNA | Antigens | Enzymes | Elution | Gels | Cyclin-dependent kinases | DNA topoisomerase | Glycerol | Replication protein A | Protein A | Chromatography | DNA biosynthesis | Polymerase | Replication origins | Cellular biology | Electrophoretic mobility | Replication | DNA-directed DNA polymerase | Methods | DNA sequencing | Cancer | Deoxyribonucleic acid | DNA
Journal Article
Journal Article
Journal Article
PLoS Genetics, ISSN 1553-7390, 07/2017, Volume 13, Issue 7, pp. e1006733 - e1006733
Bacteria, yeast and human cancer cells possess mechanisms of mutagenesis upregulated by stress responses. Stress-inducible mutagenesis potentially accelerates... 
STRESS-INDUCED MUTATION | REACTIVE OXYGEN | ADAPTIVE MUTATION | POLYMERASE-IV | GENETICS & HEREDITY | DOUBLE-STRAND BREAKS | HYDROGEN-PEROXIDE | MISMATCH REPAIR | STATIONARY-PHASE MUTATION | SACCHAROMYCES-CEREVISIAE | CATASTROPHIC CHROMOSOMAL FRAGMENTATION | DNA Damage - drug effects | DNA-Directed DNA Polymerase - biosynthesis | Reactive Oxygen Species - metabolism | Stress, Physiological - genetics | Escherichia coli - drug effects | Bacterial Proteins - genetics | Mutagenesis - genetics | DNA Repair - genetics | Mutation - genetics | DNA-Directed DNA Polymerase - genetics | SOS Response (Genetics) - genetics | Gene Expression Regulation, Bacterial - drug effects | Deoxyguanine Nucleotides - genetics | DNA Breaks, Double-Stranded - drug effects | Host-Pathogen Interactions - genetics | Escherichia coli - genetics | Escherichia coli Proteins - biosynthesis | Escherichia coli Proteins - genetics | Sigma Factor - biosynthesis | Bacterial Proteins - biosynthesis | Drug Resistance, Bacterial - genetics | Sigma Factor - genetics | Genetic aspects | Mutagenesis | Observations | Health aspects | DNA damage | Escherichia coli | Proteins | Drug resistance in microorganisms | DNA | DNA polymerases | DNA repair | Fidelity | Regulators | Yeast | DNA polymerase | SOS response | Drug resistance | Damage prevention | Alkylation | E coli | Mismatch repair | Antibiotic resistance | Bacteria | Oxidation | Repair | Deoxyribonucleic acid--DNA | Stresses | Starvation | Scavenging | Double-strand break repair | Antibiotics | Breakage | Dimers | Mutation | Guanines | DNA-directed DNA polymerase | Cancer | Index Medicus | Deoxyribonucleic acid
Journal Article
Nucleic Acids Research, ISSN 0305-1048, 09/2018, Volume 46, Issue 17, pp. 9011 - 9026
Journal Article
PLoS Pathogens, ISSN 1553-7366, 10/2016, Volume 12, Issue 10, p. e1005893
Hepatitis B virus (HBV) infection of hepatocytes begins by binding to its cellular receptor sodium taurocholate cotransporting polypeptide (NTCP), followed by... 
HEPATOCYTE CULTURES | PERSISTENCE | PLUS-STRAND DNA | POL-KAPPA | MICROBIOLOGY | ENVELOPE PROTEINS | GENOME | REPAIR | VIROLOGY | HBV REPLICATION | VIRAL-DNA | INFECTION | PARASITOLOGY |