Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA
Here we present the synthesis, the biophysical properties, and the RNase H profile of 6’-difluorinated [4.3.0]bicyclo-DNA (6’-diF-bc4,3-DNA). The difluorinated thymidine phosphoramidite building block was synthesized starting from an already known gem-difluorinated tricyclic glycal. This tricyclic s...
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doaj-e3084aaa34c649f890b890cf33cef2e42021-02-02T08:19:10ZengBeilstein-InstitutBeilstein Journal of Organic Chemistry1860-53972019-01-01151798810.3762/bjoc.15.91860-5397-15-9Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNASibylle Frei0Adam K. Katolik1Christian J. Leumann2Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, SwitzerlandDepartment of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, SwitzerlandDepartment of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, SwitzerlandHere we present the synthesis, the biophysical properties, and the RNase H profile of 6’-difluorinated [4.3.0]bicyclo-DNA (6’-diF-bc4,3-DNA). The difluorinated thymidine phosphoramidite building block was synthesized starting from an already known gem-difluorinated tricyclic glycal. This tricyclic siloxydifluorocyclopropane was converted into the [4.3.0]bicyclic nucleoside via cyclopropane ring-opening through the addition of an electrophilic iodine during the nucleosidation step followed by reduction. The gem-difluorinated bicyclic nucleoside was then converted into the corresponding phosphoramidite building block which was incorporated into oligonucleotides. Thermal denaturation experiments of these oligonucleotides hybridized to complementary DNA or RNA disclosed a significant destabilization of both duplex types (ΔTm/mod = −1.6 to −5.5 °C). However, in the DNA/RNA hybrid the amount of destabilization could be reduced by multiple insertions of the modified unit. In addition, CD spectroscopy of the oligonucleotides hybridized to RNA showed a similar structure than the natural DNA/RNA duplex. Furthermore, since the structural investigation on the nucleoside level by X-ray crystallography and ab initio calculations pointed to a furanose conformation in the southern region, a RNase H cleavage assay was conducted. This experiment revealed that the oligonucleotide containing five modified units was able to elicit the RNase H-mediated cleavage of the complementary RNA strand.https://doi.org/10.3762/bjoc.15.9DNA/RNA affinityfluorinated cyclopropanesfluorinated nucleic acidsRNase H activitysugar modified nucleosides |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sibylle Frei Adam K. Katolik Christian J. Leumann |
spellingShingle |
Sibylle Frei Adam K. Katolik Christian J. Leumann Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA Beilstein Journal of Organic Chemistry DNA/RNA affinity fluorinated cyclopropanes fluorinated nucleic acids RNase H activity sugar modified nucleosides |
author_facet |
Sibylle Frei Adam K. Katolik Christian J. Leumann |
author_sort |
Sibylle Frei |
title |
Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA |
title_short |
Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA |
title_full |
Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA |
title_fullStr |
Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA |
title_full_unstemmed |
Synthesis, biophysical properties, and RNase H activity of 6’-difluoro[4.3.0]bicyclo-DNA |
title_sort |
synthesis, biophysical properties, and rnase h activity of 6’-difluoro[4.3.0]bicyclo-dna |
publisher |
Beilstein-Institut |
series |
Beilstein Journal of Organic Chemistry |
issn |
1860-5397 |
publishDate |
2019-01-01 |
description |
Here we present the synthesis, the biophysical properties, and the RNase H profile of 6’-difluorinated [4.3.0]bicyclo-DNA (6’-diF-bc4,3-DNA). The difluorinated thymidine phosphoramidite building block was synthesized starting from an already known gem-difluorinated tricyclic glycal. This tricyclic siloxydifluorocyclopropane was converted into the [4.3.0]bicyclic nucleoside via cyclopropane ring-opening through the addition of an electrophilic iodine during the nucleosidation step followed by reduction. The gem-difluorinated bicyclic nucleoside was then converted into the corresponding phosphoramidite building block which was incorporated into oligonucleotides. Thermal denaturation experiments of these oligonucleotides hybridized to complementary DNA or RNA disclosed a significant destabilization of both duplex types (ΔTm/mod = −1.6 to −5.5 °C). However, in the DNA/RNA hybrid the amount of destabilization could be reduced by multiple insertions of the modified unit. In addition, CD spectroscopy of the oligonucleotides hybridized to RNA showed a similar structure than the natural DNA/RNA duplex. Furthermore, since the structural investigation on the nucleoside level by X-ray crystallography and ab initio calculations pointed to a furanose conformation in the southern region, a RNase H cleavage assay was conducted. This experiment revealed that the oligonucleotide containing five modified units was able to elicit the RNase H-mediated cleavage of the complementary RNA strand. |
topic |
DNA/RNA affinity fluorinated cyclopropanes fluorinated nucleic acids RNase H activity sugar modified nucleosides |
url |
https://doi.org/10.3762/bjoc.15.9 |
work_keys_str_mv |
AT sibyllefrei synthesisbiophysicalpropertiesandrnasehactivityof6difluoro430bicyclodna AT adamkkatolik synthesisbiophysicalpropertiesandrnasehactivityof6difluoro430bicyclodna AT christianjleumann synthesisbiophysicalpropertiesandrnasehactivityof6difluoro430bicyclodna |
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1724297426805719040 |