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Общее количество найденных документов : 51
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1.
Kang X. A defect in the RAD18 gene specifically increases G*С to Т*А // Environ. and Mol. Mutagenes., 1990. Vol. 15, Suppl. N17.-С.29-30

2.
Cui A single nucleotide substitution at the rib2 locus of the yeast mitochondrial gene for 21S rRNA confers resistance to erythromycin and cold-sensitive ribosome assembly // Curr. Genet., 1989. Vol. 16, N 4.-С.273-279

3.
Timms Andrew R. A UmuD,C-dependent pathway for spontaneous G:C to C:G transversions in stationary phase Escherichia coli mut Y // Mutat. Res. DNA Repair, 1999. Vol. 435, N 1.-С.77-80

4.
Chen S.-C. Base-pair mutation caused by four nitro-group containing aromatic amines in Salmonella typhimurium TA100, TA104, TA4001 and TA4006 // Environ. and Mol. Mutagenes., 1997. Vol. 29, Suppl. n 28.-С.8

5.
Garganta Base-substitution profiles of externally activated polycyclic aromatic hydrocarbons and aromatic amines determined in a lacZ reversion assay // Environ. and Mol. Mutagenes., 1999. Vol. 33, N 1.-С.75-85

6.
Changes of mutatinal spectrum of supF gene by delayed transfection after riboflavin photosensitization // J. Radiat. Res., 1998. Vol. 39, N 4.-С.379

7.
Disruption of the RAD52 gene alters the spectrum of spontaneous SUP4-о mutations in Saccharomyces cerevisiae // Genetics, 1989. Vol. 122, N 3.-С.535-542

8.
DNA replication errors produced by the replicative apparatus of Escherichia coli // J. Mol. Biol., 1999. Vol. 289, N 4.-С.835-850

9.
DNA-sequence analysis of X-ray induced Adh null mutations in Drosophila melanogaster // Environ and Mol. mutagenes, 1991. Vol. 18, N 3.-С.157-160

10.
Exome and whole-genome sequencing of esophageal adenocarcinoma identifies recurrent driver events and mutational complexity // Nature Genet., 2013. Vol. 45, N 5.-С.478-486

11.
Impact of reactive oxygen species on spontaneous mutagenesis in Escherichia coli // Genes Cells, 2006. Vol. 11, N 7.-С.767-778

12.
In vivo analysis of the mechanisms responsible for strong transcriptional polarity in a "sense" mutant within an intercistronic region // Cell, 1988. Vol. 55, N 2.-С.351-360

13.
Induction of chromosomal gene mutations in Escherichia coli by direct incorporation of oxidatively damaged nucleotides // J. Biol. Chem., 1998. Vol. 273, N 18.-С.11069-11074

14.
Wagner Leading versus lagging strand mutagenesis induced by 7,8-dihydro-8-oxo-2'-deoxyguanosine in Escherichia coli // J. Mol. Biol., 1997. Vol. 265, N 3.-С.302-309

15.
Schaaper Roll M. Mechanisms of mutagenesis in the Escherichia coli mutator mutD5: role of DNA mismatch repair // Proc. Nat. Acad. Sci. USA, 1988. Vol. 85, N 21.-С.8126-8130

16.
Charles Monofunctional adenine N-3 adducts of melphalan: Occurrence at a mutational hotspot sequence and resistance to removal by AlkA protein // Environ. and Mol. Mutagenes., 1998. Vol. 31, N 4.-С.333-339

17.
Trinh Mutagenic action of 5-nitroimidazoles: In vivo induction of GC '->' CG transversion in two Bacteroides fragilis reporter genes // Mutat. Res. Fundam. and Mol. Mech. Mutagen., 1998. Vol. 398, N 1-2.-С.55-65

18.
Mutagenic specificities and adduct distributions for 7-bromomethylbenz[a]anthracenes // Carcinogenesis, 1996. Vol. 17, N 2.-С.283-288

19.
Mutagenic specificities and adduct distributions for 7-bromomethylbenz[a]anthracenes // Carcinogenesis, 1996. Vol. 17, N 2.-С.283-288

20.
Bridges B.A. Mutation in Escherichia coli under starvation conditions: A new pathway leading to small deletions in strains defective in mismatch correction // EMBO Journal, 1997. Vol. 16, N 11.-С.3349-3356

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