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Results of search for 'au:"Saparbaev, M"', page 1 of 2
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Authors
Bennett, P V
Bissenbaev, A K
Castedo, M
Derevyanko, A G
Dianov, G L
Fedorova, O S
Greenberg, M M
Ishchenko, A A
Jurado, J
Koval, V V
Laval, J
Mazin, A V
Ovchinnikova, L P
Privezentzev, C V
Salganik, R I
Saparbaev, M
Saparbaev, M K
Sidorkina, O
Timofeyeva, N A
Zharkov, D O
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Topics
Animals
Base Sequence
DNA
DNA Damage
DNA Glycosylases
DNA Repair
Endodeoxyribonucleases
Escherichia coli
Humans
Kinetics
Mutagens
N-Glycosyl Hydrolases
Nucleic Acid Heteroduplexes
Plasmids
Substrate Specificity
analogs & derivatives
chemistry
enzymology
genetics
metabolism
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Your search returned 24 results.
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1.
3,N4-ethenocytosine, a highly mutagenic adduct, is a primary substrate for Escherichia coli double-stranded uracil-DNA glycosylase and human mismatch-specific thymine-DNA glycosylase.
[electronic resource]
by
Saparbaev, M
Laval, J
Producer:
19980820
In:
Proceedings of the National Academy of Sciences of the United States of America
vol. 95
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2.
Excision of hypoxanthine from DNA containing dIMP residues by the Escherichia coli, yeast, rat, and human alkylpurine DNA glycosylases.
[electronic resource]
by
Saparbaev, M
Laval, J
Producer:
19940728
In:
Proceedings of the National Academy of Sciences of the United States of America
vol. 91
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3.
Enzymology of the repair of etheno adducts in mammalian cells and in Escherichia coli.
[electronic resource]
by
Saparbaev, M
Laval, J
Producer:
20000217
In:
IARC scientific publications
no. 150
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4.
Escherichia coli, Saccharomyces cerevisiae, rat and human 3-methyladenine DNA glycosylases repair 1,N6-ethenoadenine when present in DNA.
[electronic resource]
by
Saparbaev, M
Kleibl, K
Laval, J
Producer:
19951124
In:
Nucleic acids research
vol. 23
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5.
Effects of nitrous acid treatment on the survival and mutagenesis of Escherichia coli cells lacking base excision repair (hypoxanthine-DNA glycosylase-ALK A protein) and/or nucleotide excision repair.
[electronic resource]
by
Sidorkina, O
Saparbaev, M
Laval, J
Producer:
19970430
In:
Mutagenesis
vol. 12
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6.
Requirement of mismatch repair genes MSH2 and MSH3 in the RAD1-RAD10 pathway of mitotic recombination in Saccharomyces cerevisiae.
[electronic resource]
by
Saparbaev, M
Prakash, L
Prakash, S
Producer:
19961206
In:
Genetics
vol. 142
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7.
Interactions of the human, rat, Saccharomyces cerevisiae and Escherichia coli 3-methyladenine-DNA glycosylases with DNA containing dIMP residues.
[electronic resource]
by
Saparbaev, M
Mani, J C
Laval, J
Producer:
20000418
In:
Nucleic acids research
vol. 28
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8.
The HAP1 protein stimulates the turnover of human mismatch-specific thymine-DNA-glycosylase to process 3,N(4)-ethenocytosine residues.
[electronic resource]
by
Privezentzev, C V
Saparbaev, M
Laval, J
Producer:
20010920
In:
Mutation research
vol. 480-481
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9.
Antimutagenic role of base-excision repair enzymes upon free radical-induced DNA damage.
[electronic resource]
by
Laval, J
Jurado, J
Saparbaev, M
Sidorkina, O
Producer:
19980901
In:
Mutation research
vol. 402
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10.
Predictive biomarkers for cancer therapy with PARP inhibitors.
[electronic resource]
by
Michels, J
Vitale, I
Saparbaev, M
Castedo, M
Kroemer, G
Producer:
20140916
In:
Oncogene
vol. 33
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11.
The ring fragmentation product of thymidine C5-hydrate when present in DNA is repaired by the Escherichia coli Fpg and Nth proteins.
[electronic resource]
by
Jurado, J
Saparbaev, M
Matray, T J
Greenberg, M M
Laval, J
Producer:
19980612
In:
Biochemistry
vol. 37
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12.
AlkA protein is the third Escherichia coli DNA repair protein excising a ring fragmentation product of thymine.
[electronic resource]
by
Privezentzev, C V
Saparbaev, M
Sambandam, A
Greenberg, M M
Laval, J
Producer:
20010111
In:
Biochemistry
vol. 39
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13.
Characterization of Aspergillus niger endo-1,4-β-glucanase ENG1 secreted from Saccharomyces cerevisiae using different expression vectors.
[electronic resource]
by
Taipakova, S M
Smekenov, I T
Saparbaev, M K
Bissenbaev, A K
Producer:
20160329
In:
Genetics and molecular research : GMR
vol. 14
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14.
The chemical mutagen dimethyl sulphate induces homologous recombination of plasmid DNA by increasing the binding of RecA protein to duplex DNA.
[electronic resource]
by
Dianov, G L
Saparbaev, M K
Mazin, A V
Salganik, R I
Producer:
19910809
In:
Mutation research
vol. 249
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15.
Dimerization of plasmid DNA accelerates selection for antibiotic resistance.
[electronic resource]
by
Mazin, A V
Timchenko, T V
Saparbaev, M K
Mazina, O M
Producer:
19970404
In:
Molecular microbiology
vol. 20
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16.
Clustered DNA damages as dosemeters for ionising radiation exposure and biological responses.
[electronic resource]
by
Sutherland, B M
Bennett, P V
Saparbaev, M
Sutherland, J C
Laval, J
Producer:
20020423
In:
Radiation protection dosimetry
vol. 97
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17.
Kinetic mechanism of human apurinic/apyrimidinic endonuclease action in nucleotide incision repair.
[electronic resource]
by
Timofeyeva, N A
Koval, V V
Ishchenko, A A
Saparbaev, M K
Fedorova, O S
Producer:
20111122
In:
Biochemistry. Biokhimiia
vol. 76
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18.
Initiation of 8-oxoguanine base excision repair within trinucleotide tandem repeats.
[electronic resource]
by
Derevyanko, A G
Endutkin, A V
Ishchenko, A A
Saparbaev, M K
Zharkov, D O
Producer:
20130107
In:
Biochemistry. Biokhimiia
vol. 77
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19.
[Introduction of new DNA sequences into previously selected regions of a plasmid genome by means of the formation of heteroduplexes].
[electronic resource]
by
Saparbaev, M K
Mazin, A V
Ovchinnikova, L P
Dianov, G L
Salganik, R I
Producer:
19880630
In:
Molekuliarnaia genetika, mikrobiologiia i virusologiia
no. 2
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20.
[Effectiveness of chemical mutagenesis in multiple damage to one or both strands of plasmid DNA].
[electronic resource]
by
Karamysheva, T V
Mazin, A V
Saparbaev, M K
Dianov, G L
Salganik, R I
Producer:
19910923
In:
Genetika
vol. 27
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