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Z J Lesnikowski

Publications and source records attributed to Z J Lesnikowski.

7 recordsLinked to original sources

Carboranyl oligonucleotides. 3. Biochemical properties of oligonucleotides containing 5-(o-carboranyl-1-yl)-2'-deoxyuridine.

Boronated oligonucleotides are potential candidates for boron neutron capture therapy, antisense technology, and as tools in molecular biology. The biological properties of dodecathymidylic acids containing one or more 5-(o-carboran-1-yl)-2'-deoxyuridine residues at different locations within the oligonucleotide chain were studied. 5-(o-Carboran-1-yl)-2'-deoxyuridine containing oligonucleotides manifested marked increased lipophilicity and resistance to 3'- or 5'-phosphodiesterases compared to the corresponding unmodified oligomer. They were substrates for T4 polynucleotide kinase and primers for Escherichia coli polymerase I and human immunodeficiency virus type 1 reverse transcriptase but not for human DNA polymerase alpha and beta. They also formed heteroduplexes that were substrates for E. coli RNase H, an essential property for antisense technology. These studies indicate that the carboranyl-containing oligonucleotides have desirable properties that need to be exploited further in the design of novel biopharmaceuticals.

Animals↗

Octa(thymidine methanephosphonates) of partially defined stereochemistry: synthesis and effect of chirality at phosphorus on binding to pentadecadeoxyriboadenylic acid.

Block condensation of MePOCI2 or MeP(NEt2)2 with appropriately protected tetra(thymidine methanephosphonates) of predetermined sense of chirality at asymmetric phosphonate centres gave two pairs of diastereomeric mixtures, namely (SpSpSpSpSpSpSp + SpSpSpRpSpSpSp) 5a and (RpRpRpRpRpRpRp + RpRpRpSpRpRpRp) 5b. A comparison of the CD spectra of 5a and 5b with those of octathymidylic acid (7) and a random mixture of diastereomers of octa(thymidine methanephosphonate) (6), and also a comparison of the Tm of complexes formed between 5a, 5b, 6 or 7, and pentadecadeoxyriboadenylic acid (8), indicates that octamer 5b and its complex with its complementary oligonucleotide has a well-ordered structure due to the 'outward' or 'pseudoequatorial' orientation of the methyl group of each internucleotide methanephosphonate function of Rp configuration. Results presented in this report clearly indicate that the stability of hybrids formed between octa(thymidine methanephosphonate) and pentadecadeoxyriboadenylic acid depends on the stereochemistry of each internucleotide methanephosphonate function and strongly suggests that stereoselective synthesis of P-chiral oligonucleotide analogues is an important goal.

Chemical Phenomena↗

Stereoselective synthesis of P-homochiral oligo(thymidine methanephosphonates).

An approach to the stereoselective synthesis of P-homochiral oligo(thymidine methanephosphonates) is described. Fully protected (Rp)- and (Sp)-diastereomers of MMTrTPMeTAC (3) were prepared in the stereospecific reaction of P-chiral nucleotide component 5'-O-monomethoxytritylthymidine 3'-O-[O-(4-nitrophenyl)methanephosphonate] (1) and 3'-O-acetylthmydine (2) bearing activated 5'-hydroxyl function. Deprotection of the 5'-OH group in 3 and subsequent stepwise reactions of activated 5'-OH oligonucleotide components with (Rp)- or (Sp)- isomers of 1 gave the trinucleotide MMTrTPMeTPMeTAC (4) and, subsequently, the tetranucleotide MMTrTPMeTPMeTPMeTAC (5) possessing all (Rp)- or all (Sp)- configurations at their internucleotide methanephosphonate P-atoms.

Circular Dichroism↗

A simple procedure for synthesis of diastereoisomers of thymidine cyclic 3',5'-phosphate derivatives.

Diastereoisomeric thymidine cyclic (3',5')-methanephosphonates (3a), cyclic (3',5')-phosphoranilidates (3b) and cyclic (3',5')-phosphoranilidothioates (3c) were prepared by treatment of diastereoisomerically pure thymidine 3'-O-[O-(4-nitrophenyl)methanephosphonates] (2a), 3'-O-[O-(4-nitrophenyl)phosphoranilidates] (2b) or 3'-O-[O-(4-nitrophenyl)phosphoranilidothioates] (2c), respectively, with sodium hydroxide in dioxane-water solution.

Indicators and Reagents↗