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1
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0031907155
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Analysis of damage tolerance pathways in Saccharomyces cerevisiae: A requirement for Rev3 DNA polymerase in translesion synthesis
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Baynton K., Bresson-Roy A., Fuchs R. P. P. Analysis of damage tolerance pathways in Saccharomyces cerevisiae: a requirement for Rev3 DNA polymerase in translesion synthesis. Mol. Cell. Biol. 18:1998;960-966.
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Baynton, K.1
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2
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0039547559
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Single adduct mutagenesis: Strong effect of the position of a single acetylaminofluorene adduct within a mutation hot spot
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Burnouf D., Koehl P., Fuchs R. P. P. Single adduct mutagenesis: strong effect of the position of a single acetylaminofluorene adduct within a mutation hot spot. Proc. Natl Acad. Sci. USA. 86:1989;4147-4151.
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Burnouf, D.1
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3
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0021770755
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DNA binding spectrum of the carcinogen N -acetoxy- N -2-acetylaminofluorene significantly differs from the mutation spectrum
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Fuchs R. P. P. DNA binding spectrum of the carcinogen N -acetoxy- N -2-acetylaminofluorene significantly differs from the mutation spectrum. J. Mol. Biol. 177:1984;173-180.
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Fuchs, R.P.P.1
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4
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0032573091
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Inactivation of DNA proofreading obviates the need for SOS induction in frameshift mutagenesis
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Fuchs R. P. P., Napolitano R. L. Inactivation of DNA proofreading obviates the need for SOS induction in frameshift mutagenesis. Proc. Natl Acad. Sci. USA. 95:1998;13114-13119.
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Fuchs, R.P.P.1
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5
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0019834780
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Hot spots of frameshift mutations induced by the ultimate carcinogen N -acetoxy- N -2-acetylaminofluorene
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Fuchs R. P. P., Schwartz N., Daune M. P. Hot spots of frameshift mutations induced by the ultimate carcinogen N -acetoxy- N -2-acetylaminofluorene. Nature. 294:1981;657-659.
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Nature
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Fuchs, R.P.P.1
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6
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0027208076
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DNA adduct induced stabilization of slipped frameshift intermediates within repetitive sequences: Implications for mutagenesis
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Garcia A., Lambert I. B., Fuchs R. P. P. DNA adduct induced stabilization of slipped frameshift intermediates within repetitive sequences: implications for mutagenesis. Proc. Natl Acad. Sci. USA. 90:1993;5989-5993.
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Garcia, A.1
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7
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0017298802
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A model for replication repair in mammalian DNA
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Higgins N. P., Kato K., Strauss B. A model for replication repair in mammalian DNA. J. Mol. Biol. 101:1976;417-425.
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8
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0024389422
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Construction of plasmids containing a unique acetylaminofluorene adduct located within a mutation hot spot
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Koehl P., Burnouf D., Fuchs R. P. P. Construction of plasmids containing a unique acetylaminofluorene adduct located within a mutation hot spot. J. Mol. Biol. 207:1989;355-364.
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Koehl, P.1
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9
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0024490227
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Genetic control of -AAF induced mutagenesis at alternating GC sequences: An additional role for RecA
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Koffel-Schwartz N., Fuchs R. P. P. Genetic control of -AAF induced mutagenesis at alternating GC sequences: an additional role for RecA. Mol. Gen. Genetics. 215:1989;306-311.
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Mol. Gen. Genetics
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Koffel-Schwartz, N.1
Fuchs, R.P.P.2
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10
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0029149056
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Sequence determinants for -2 frameshift mutagenesis at Nar I-derived hot spots
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Koffel-Schwartz N., Fuchs R. P. P. Sequence determinants for -2 frameshift mutagenesis at Nar I-derived hot spots. J. Mol. Biol. 252:1995;507-513.
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Koffel-Schwartz, N.1
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11
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84886640242
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Carcinogen induced mutation spectrum in wild-type, uvrA and umuC strains in E. coli: Strain specificity and mutation prone sequences
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Koffel-Schwartz N., Verdier J. M., Bichara M., Freund A. M., Daune M. P., Fuchs R. P. P. Carcinogen induced mutation spectrum in wild-type, uvrA and umuC strains in E. coli: strain specificity and mutation prone sequences. J. Mol. Biol. 177:1984;33-51.
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Koffel-Schwartz, N.1
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Bichara, M.3
Freund, A.M.4
Daune, M.P.5
Fuchs, R.P.P.6
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12
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0029797706
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Cellular strategies for accomodating replication-hindering adducts in DNA: Control by the SOS response in E. coli
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Koffel-Schwartz N., Coin F., Veaute X., Fuchs R. P. P. Cellular strategies for accomodating replication-hindering adducts in DNA: control by the SOS response in E. coli. Proc. Natl Acad. Sci. USA. 93:1996;7805-7810.
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Koffel-Schwartz, N.1
Coin, F.2
Veaute, X.3
Fuchs, R.P.P.4
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14
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0028039973
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Use of single-turnover kinetics to study adduct bypass by T7 DNA polymerase
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Lindsley J. E., Fuchs R. P. P. Use of single-turnover kinetics to study adduct bypass by T7 DNA polymerase. Biochemistry. 33:1994;764-772.
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Biochemistry
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Lindsley, J.E.1
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17
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0028148841
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NMR evidence of the stabilisation by the carcinogen N -2-acetylaminofluorene of a frameshift mutation intermediate
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Milhe C., Dhalluin C., Fuchs R. P. P., Lefevre J.-F. NMR evidence of the stabilisation by the carcinogen N -2-acetylaminofluorene of a frameshift mutation intermediate. Nucl. Acids Res. 22:1994;4646-4652.
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Nucl. Acids Res.
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Milhe, C.1
Dhalluin, C.2
Fuchs, R.P.P.3
Lefevre, J.-F.4
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18
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0030029120
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NMR data show that the carcinogen N-2-acetylaminofluorene stabilises an intermediate of -2 frameshift mutagenesis in a region of high mutation frequency
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Milhe C., Fuchs R. P. P., Lefevre J.-F. NMR data show that the carcinogen N-2-acetylaminofluorene stabilises an intermediate of -2 frameshift mutagenesis in a region of high mutation frequency. Eur. J. Biochem. 235:1996;120-127.
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Eur. J. Biochem.
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Milhe, C.1
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Lefevre, J.-F.3
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19
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0031004090
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New strategy for the construction of single stranded plasmids with single mutagenic lesions
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Napolitano R. L., Fuchs R. P. P. New strategy for the construction of single stranded plasmids with single mutagenic lesions. Chem. Res. Toxicol. 10:1997;667-671.
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Chem. Res. Toxicol.
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Napolitano, R.L.1
Fuchs, R.P.P.2
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20
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0028293697
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DNA sequence determinants of carcinogen-induced frameshift mutagenesis
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Napolitano R. L., Lambert I. B., Fuchs R. P. P. DNA sequence determinants of carcinogen-induced frameshift mutagenesis. Biochemistry. 33:1994;1311-1315.
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Biochemistry
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Napolitano, R.L.1
Lambert, I.B.2
Fuchs, R.P.P.3
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22
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0031741046
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A slipped replication intermediate model is stabilized by the syn orientation of N -2-aminofluorene andN -2-acetylaminofluorene modified guanine at a mutational hotspot
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Roy D., Hingerty B. E., Shapiro R., Broyde S. A slipped replication intermediate model is stabilized by the syn orientation of N -2-aminofluorene andN -2-acetylaminofluorene modified guanine at a mutational hotspot. Chem. Res. Toxicol. 11:1998;1301-1311.
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Roy, D.1
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Shapiro, R.3
Broyde, S.4
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24
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0032568861
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Expansion of CTG repeats from human disease genes is dependent upon replication mechanisms in E. coli: The effect of long patch mismatch repair revisited
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Schumacher S., Fuchs R. P. P., Bichara M. Expansion of CTG repeats from human disease genes is dependent upon replication mechanisms in E. coli: the effect of long patch mismatch repair revisited. J. Mol. Biol. 279:1998;1101-1110.
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Schumacher, S.1
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Bichara, M.3
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25
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0027218812
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Greater susceptibility to mutations in lagging strand of DNA replication in Escherichia coli than in leading strand
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Veaute X., Fuchs R. P. P. Greater susceptibility to mutations in lagging strand of DNA replication in Escherichia coli than in leading strand. Science. 261:1993;598-600.
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Science
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Veaute, X.1
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