| Literature DB >> 25161745 |
Branislav Dugovic1, Michael Wagner1, Christian J Leumann1.
Abstract
We present the synthesis of the two novel nucleosides iso-tc-T and bc(en)-T, belonging to the bicyclo-/tricyclo-DNA molecular platform. In both modifications the torsion around C6'-C7' within the carbocyclic ring is planarized by either the presence of a C6'-C7' double bond or a cyclopropane ring. Structural analysis of these two nucleosides by X-ray analysis reveals a clear preference of torsion angle γ for the gauche orientation with the furanose ring in a near perfect 2'-endo conformation. Both modifications were incorporated into oligodeoxynucleotides and their thermal melting behavior with DNA and RNA as complements was assessed. We found that the iso-tc-T modification was significantly more destabilizing in duplex formation compared to the bc(en)-T modification. In addition, duplexes with complementary RNA were less stable as compared to duplexes with DNA as complement. A structure/affinity analysis, including the already known bc-T and tc-T modifications, does not lead to a clear correlation of the orientation of torsion angle γ with DNA or RNA affinity. There is, however, some correlation between furanose conformation (N- or S-type) and affinity in the sense that a preference for a 3'-endo like conformation is associated with a preference for RNA as complement. As a general rule it appears that T m data of single modifications with nucleosides of the bicyclo-/tricyclo-DNA platform within deoxyoligonucleotides are not predictive for the stability of fully modified oligonucleotides.Entities:
Keywords: DNA/RNA affinity; X-ray structures; nucleic acids; nucleosides; oligonucleotide therapy; oligonucleotides
Year: 2014 PMID: 25161745 PMCID: PMC4142851 DOI: 10.3762/bjoc.10.194
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Chemical structures and carbon numbering scheme of tricyclo(tc)-DNA (top, left), bicyclo(bc)-DNA (top, right) and the newly synthesized iso-tricyclo(iso-tc)-DNA (bottom, left) and bicyclo-en(bcen)-DNA (bottom, right).
Scheme 1Conditions: (a) NaBH4, CeCl3·7H2O, MeOH, −78 °C → rt, 1.5 h, 73% (+9% of C6-epimer); (b) TBS-Cl, imidazole, CH2Cl2, rt, 16 h, 79%; (c) Et2Zn in hexane (1 M), CH2I2, CH2Cl2, 0 °C → rt, 16 h, 86%; (d) PivCl, DMAP, pyridine, ClH2C–CH2Cl, 70 °C, quant.; (e) TBAF, THF, rt, 19 h, 95%; (f) thymine, BSA, SnCl4, CH3CN, 0 °C → rt, 17 h, 56% 7β + 22% (7α/β 2.5:1); (g) Bu4NOH, H2O/dioxane, rt, 16 h, 94%; (h) DMTrCl, pyridine, CH2Cl2, rt, 24 h, 98%; (i) CEP-Cl, DIPEA, THF, rt, 4 h, 89%.
Scheme 2Conditions: (a) thymine, BSA, TMSOTf, TMSCl, CH3CN, rt, 2.5 h; (b) DMTrCl, pyridine, rt, 16 h, 29% of 12α and 34% of 12β (over two steps); (c) CEP-Cl, DIPEA, THF, rt, 1 h, 94%.
Figure 2X-ray structure of top row: nucleosides 8β (left), 11β (center) and overlay of both structures (right); bottom row: tc-T (Mol A, left, Mol B, right).
Selected backbone torsion angles and sugar pucker data for 8β and 11β and related bi/tricyclo-nucleosides from X-ray structures.
| γ | δ | χ | |||
| 86.8° | 150.1° | −106.4° | 167.8° | 36.1 | |
| 86.9° | 146.0° | −115.7° | 160.7° | 36.3 | |
| bc-Ta | 149.3° | 126.5° | −112.7° | 128.4° | 42.4 |
| tc-Tb Mol A | 125.0° | 152.5° | −130.4° | 172.2° | 36.7 |
| tc-Tb Mol B | 154.8° | 98.7° | −120.3° | 94.4° | 36.0 |
aRef [33]; btwo structurally independent molecules per asymmetric unit.
Sequence information and analytical data of ON1–7 as well as Tm data from UV-melting curves (260 nm) in 10 mM NaH2PO4/Na2HPO4, 150 mM NaCl, pH 7.0. Duplex concentration: 1.2 μM.
| Sequence | Modification t | |||
| d(GGATGTTCtCGA) | 45.3 (−2.0) | 45.6 (−2.2) | ||
| d(GGAtGTTCtCGA) | 43.9 (−1.7) | 45.0 (−1.4) | ||
| d(GGATGttCTCGA) | 44.4 (−1.4) | 46.2 (−0.8) | ||
| d(GGATGTTCtCGA) | 44.8 (−2.5) | 43.0 (−4.8) | ||
| d(GGATGTTCtCGA) | 45.8 (−1.6) | 46.6 (−1.2) | ||
| d(GGAtGTTCtCGA) | 46.8 (−0.3) | 46.8 (−0.5) | ||
| d(GGATGttCTCGA) | 47.2 (−0.1) | 49.6 (+0.9) | ||
aTm of unmodified duplex d(GGATGTTCTCGA): 47.3 °C vs DNA; 47.8 °C vs RNA; ΔTm per modification in parenthesis.
Scheme 3Pathways for elimination of the modified nucleotides during the oxidation step in oligonucleotide assembly.
ΔTm/modification data for four different bi/tricyclo modifications in one sequence context.
| d(GGATGTTCtCGA) | Δ | Δ | furanose pucker | torsion angle γ |
| bc-Ta | +1.5 | −0.5 | 1’-exo | trans |
| bcen-T | −2.0 | −2.2 | 2’-endo | gauche |
| tc-T | −1.6 | −1.2 | 2’-endo/ | trans |
| iso-tc-T | −2.5 | −4.8 | 2’-endo | gauche |
aRef. [27].