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Pure Appl. Chem., 1983, Vol. 55, No. 8, pp. 1273-1280

http://dx.doi.org/10.1351/pac198355081273

JOINT COMMISSION ON BIOCHEMICAL NOMENCLATURE

Abbreviations and symbols for the description of conformations of polynucleotide chains (Provisional)

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  • Largy Eric, Liu Wenbo, Hasan Abid, Perrin David M.: Base-Pairing Behavior of a Carbocyclic Janus-AT Nucleoside Analogue Capable of Recognizing A and T within a DNA Duplex. ChemBioChem 2013, 14, 2199. <http://dx.doi.org/10.1002/cbic.201300250>
  • Bekö Sándor L., Urmann David, Schmidt Martin U.: 5′-Deoxy-5-Fluorouridine: Characterisation, Crystal Structure and Molecular Conformations Determined from X-Ray Powder Data. J Chem Crystallogr 2012, 42, 933. <http://dx.doi.org/10.1007/s10870-012-0339-0>
  • Yuan Jianmei, Huang Yunqing, Hatanaka M., Karwowski Boleslaw T.: First-principles study of a new type nanojunction: Finite length carbon chain inserted into half of a carbon nanotube. Journal of Molecular Structure: THEOCHEM 2009, 915, 63. <http://dx.doi.org/10.1016/j.theochem.2009.08.020>
  • Andrae Dirk: Molecular knots, links, and fabrics: prediction of existence and suggestion of a synthetic route. New J Chem 2006, 30, 873. <http://dx.doi.org/10.1039/b601895e>
  • Wiechelman Karen, Taylor Eric R.: Anti-Syn Conformational Range of Pyrimidines with Deoxyribofuranose. Journal of Biomolecular Structure & Dynamics 1998, 15, 1181. <http://dx.doi.org/10.1080/07391102.1998.10509012>
  • Litten J. Christopher, Leumann Christian: Nucleic-Acid Analogs with Restricted Conformational Flexibility in the Sugar-Phosphate Backbone (‘Bicyclo-DNA’). Part 6. Probing the influence of torsion angle γ on DNA-duplex stability: Syntheis and properties of oligodeoxynucleotides containing [(3′S,5′S)-2′-deoxy-3′,5′-ethano-β-D-ribofuranosyl]adenine and -thymine (‘5′-epi-bicyclodeoxynucleosides’). HCA 1996, 79, 1129. <http://dx.doi.org/10.1002/hlca.19960790421>
  • Tarköy Markus, Bolli Martin, Leumann Christian: Nucleic-Acid Analogues with Restricted Conformational Flexibility in the Sugar-Phosphate Backbone (‘bicyclo-DNA’). Part 3. Synthesis, pairing properties, and calorimetric determination of duplex and triplex stability of decanucleotides from [(3′S,5′R)-2′-deoxy-3′,5′- ethano-β -D-ribofuranosyl]adenine and -thymine. HCA 1994, 77, 716. <http://dx.doi.org/10.1002/hlca.19940770315>
  • Tarköy Markus, Bolli Martin, Schweizer Bernd, Leumann Christian: Nucleic-Acid Analogues with Constraint Conformational Flexibility in the Sugar-Phosphate Backbone (‘Bicyclo-DNA’). Part 1. Preparation of (3S,5′R)-2′-Deoxy-3′,5′-ethano-αβ-D-ribonucleosides (‘Bicyclonucleosides’). HCA 1993, 76, 481. <http://dx.doi.org/10.1002/hlca.19930760132>
  • Van Aerschot A., Everaert D., Gosselin G., Peeters O., Blaton N., De Ranter C., Imbach J.-L., Balzarini J., De Clercq E., Herdewijn P.: 2′-Azido-2′,3′-dideoxythymidine: Synthesis and crystal structure of a 2′-substituted dideoxynucleoside. Antivir Res 1990, 14, 357. <http://dx.doi.org/10.1016/0166-3542(90)90054-B>
  • Van Aerschot A. A., Everaert D. H., Peeters O. M., Blaton N. M., De Ranter C. J., Herdewijn P. A.: Synthesis and Structure of 2′,3′-Dideoxy-3′-fluoro-5-cyanouridine. Nucleosides and Nucleotides 1990, 9, 547. <http://dx.doi.org/10.1080/07328319008045186>