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B Zajc

Publications and source records attributed to B Zajc.

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Stereospecific differences in repair by human cell extracts of synthesized oligonucleotides containing trans-opened 7,8,9, 10-tetrahydrobenzo[a]pyrene 7,8-diol 9,10-epoxide N2-dG adduct stereoisomers located within the human K-ras codon 12 sequence.

The potent environmental carcinogen benzo[a]pyrene (BaP), following enzymatic activation to enantiomeric pairs of bay-region 7,8-diol 9, 10-epoxides (the benzylic 7-hydroxyl group and epoxide oxygen are cis for DE-1 diastereomers and trans for DE-2 diastereomers), reacts with DNA to form covalent adducts predominately at the exocyclic amino groups of purines. Specific adducts, corresponding to the trans opening of each of the four optically active BaP DE isomers at C-10 by the N 2-amino group of dG, were synthesized as appropriately blocked phosphoramidites and were incorporated at either the first or second G of codon 12 within the G-rich sequence of human K-ras codons 11-13: GCT G1G2T GGC. The adducted oligonucleotides were incorporated into plasmids by primer extension, followed by purification of the covalently closed circular constructs. Adducts derived from either (+)- or (-)-DE-2, placed at either G1 or G2, presented strong blocks to in vitro transcription elongation by bacteriophage T3 RNA polymerase, but only moderately blocked transcription elongation by human RNA polymerase II in nuclear extracts. Adducts derived from all four DEs, placed on either G1 or G2, were used as substrates in a DNA repair synthesis assay using human whole cell extracts. Adducts derived from three of the DE stereoisomers exhibited significant amounts of repair synthesis, but the (-)-DE-2 adduct experienced no repair synthesis above that of the control. Constructs containing a pre-existing nick at the sixth phosphodiester bond 3' to either (+)-DE-2 or (-)-DE-2 adducts exhibited increased repair synthesis.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Sequence context profoundly influences the mutagenic potency of trans-opened benzo[a]pyrene 7,8-diol 9,10-epoxide-purine nucleoside adducts in site-specific mutation studies.

The postoligomerization method was used to prepare oligonucleotide 16-mers that contained dAdo or dGuo adducts, derived from trans opening of each enantiomer of the two diastereomeric benzo[a]pyrene 7,8-diol 9,10-epoxides, in two sequence contexts. These 16 oligonucleotides, along with the four corresponding oligonucleotides containing unsubstituted purines, were ligated into single-stranded DNA from bacteriophage M13mp7L2 and transfected into Escherichia coli SMH77. The mutagenic effects of replication past these adducts were then evaluated. The various adduct isomers induced point mutations at different frequencies and with different distributions of mutation types, as was anticipated. However, sequence context had the most substantial effects on mutation frequency. A high frequency of deletions of a single guanine was found in a context where the dGuo adduct was at the 3'-end of a run of five guanines, whereas no single base deletion was found in the other context studied, 5'-CGA-3'. Mutation frequencies in constructs containing dAdo adducts were much higher in a 5'-TAG-3' context (37-58%, depending on the individual isomer) than in a 5'-GAT-3' context (5-20%), and for a given adduct, mutation frequency was up to 10-fold higher in the former sequence than in the latter. These findings indicate that sequence context effects need more thorough evaluation if the goal of understanding the mechanism through which DNA adducts lead to mutation is to be achieved.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Effect of single benzo[a]pyrene diol epoxide-deoxyguanosine adducts on the action of DNA polymerases in vitro.

Neither Sequenase 2.0 nor Klenow fragment were able to extend 12-mer primers using the eight templates (16-mers) derived by placing each of the four isomeric benzo[a]pyrene diol epoxide-deoxyguanosine adducts at the 13th nucleotide from the 3'-end of two different sequence contexts. Using an 11-mer primer to get a running start did not overcome the adduct induced block of primer extension except for the Klenow fragment and one of the two sequence contexts, indicating primer extension is dependent on both the polymerase and sequence context. In this case, purine nucleoside triphosphates (dATP>dGTP) were incorporated opposite each of the four adducts.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Multiple fluorescence lifetimes for oligonucleotides containing single, site-specific modifications at guanine and adenine corresponding to trans addition of exocyclic amino groups to (+)-(7R,8S,9S,10R)- and (+)-(7S,8R,9R,10S) -7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene.

Fluorescence decay profiles of four oligonucleotide duplexes, [table: see text] ((+)- and (-)-trans-1) and [table: see text] ((+)- and (-)-trans-2), in which an exocyclic amino group of deoxyadenosine (A*) or deoxyguanosine (G*) has been alkylated by trans opening at C-10 of the epoxide group of either the (+)-(R,S,S,R)- or (-)-(S,R,R,S)-enantiomer of (+/-)-7 beta,8 alpha-dihydroxy-9 alpha,10 alpha-epoxy-7,8,9,10- tetrahydrobenzo[a]pyrene (BPDE in which the benzylic 7-hydroxy group and the epoxide oxygen are trans), exhibit more than one fluorescence lifetime. Decay profiles of the oligomers, measured at 15 degrees C with excitation and emission wavelengths of 335 and 400 nm, respectively, have been analyzed using a triple-exponential decay law. Results for (+)- and (-)-trans-1 and -2 have been compared with results for the modified, single-stranded oligonucleotides ((+)- and (-)-trans-SS-1, and (+)- and (-)-trans-SS-2) and for the cis and trans opened products formed on alkylation at the 6-amino group of 2'-deoxyadenosine 5'-phosphate by (+)-(R,S,S,R)-BPDE ((+)-trans- and (+)-cis-A). The profiles of (+)-trans- and (+)-cis-A are well represented by single-exponential decay laws with lifetimes of 86 and 110 +/- 3 ns, respectively. For the single- and double-stranded oligomer adducts, which exhibit at least three fluorescence lifetimes, two of the lifetimes are short (0.5-14 +/- 1 ns) and one is long (35-59 +/- 3 ns). The fluorescence lifetimes and the amplitudes of the long-lived components in the decay profiles of the double-stranded oligomer adducts are generally smaller than those for the corresponding single-stranded adducts. The data provide evidence that the double-stranded oligomer adducts exist as multiple conformations. Previously reported NMR results suggest that the short lifetime fluorescence components are due to major adduct conformations in which the pyrenyl group is intercalated ((+)- and (-)-trans-1) or lies in the minor groove ((+)- and (-)-trans-2). The observation of long lifetime fluorescence species for the double-stranded oligomers is consistent with the presence of minor conformations (approximately 1-5%) in which the double-stranded oligomer either is locally denatured or is a mixture of locally denatured double-stranded conformations and equilibrium concentrations of single-stranded oligomers.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗