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Original Articles

AN APPROACH TO OLIGONUCLEOTIDE SYNTHESIS BY THE PHOSPHOTRIESTER METHOD

Pages 245-260 | Published online: 13 Dec 2006

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Joachim Thiem & Monika Franzkowiak. (1989) Phosphodiester-Bridged Saccharide Structures. Journal of Carbohydrate Chemistry 8:1, pages 1-28.
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Articles from other publishers (22)

Dmitry A. Stetsenko. 2008. The Power of Functional Resins in Organic Synthesis. The Power of Functional Resins in Organic Synthesis 529 583 .
Louis F. Fieser, Mary Fieser & Tse‐Lok HoTse‐Lok Ho, Mary Fieser & Louis Fieser. 2006. Fieser and Fieser's Reagents for Organic Synthesis. Fieser and Fieser's Reagents for Organic Synthesis.
Frédéric Guillod, Jacques Greiner & Jean G. Riess. (1994) Synthesis of double-tailed (perfluoroalkyl)alkyl phosphosugars: new components for drug-carrying and -targeting systems. Carbohydrate Research 261:1, pages 37-55.
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Piet Herdewijn, Ramamurthy Charubala & Wolfgang Pfleiderer. (2004) Nucleotides. Part XXXI. Modified Oligomeric 2′–5′ A Analogues: Synthesis of 2′–5′ oligonucleotides with 9‐(3′‐azido‐3′‐deoxy‐β‐ D ‐xylofuranosyl)adenine and 9‐(3′‐amino‐3′‐deoxy‐β‐ D ‐xylofuranosyl)adenine as modified nucleosides . Helvetica Chimica Acta 72:8, pages 1729-1738.
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Ramamurthy Charubala, Wolfgang Pfleiderer, Robert W. Sobol, Shi Wu Li & Robert J. Suhadolnik. (2004) Nucleotides part XXX Chemical synthesis of adenylyl‐(2′ → 5′)‐adenylyl‐(2′ → 5′)‐8‐azidoadenosine, and activation and photoaffinity labelling of RNase L by [ 32 P]p5′A2′p5′A2′p5′N 3 8 A . Helvetica Chimica Acta 72:6, pages 1354-1361.
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Frank Himmelsbach, Ramamurthy Charubala & Wolfgang Pfleiderer. (2004) Nucleotides. Part XXVII Bis[2‐( p ‐nitrophenyl)ethyl] Phosphorochloridate, a New Versatile Phosphorylating Agent in Nucleotide Chemistry . Helvetica Chimica Acta 70:5, pages 1286-1295.
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Misuzu Lchiba, Ramamurthy Charubala, Rajendra S. Varma & Wolfgang Pfleiderer. (2004) Nucleotides. Part XXV. Chemical synthesis of the hexaribonucleotide C‐A‐A‐C‐C‐A. Helvetica Chimica Acta 69:7, pages 1768-1777.
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Dieter Flockerzi, Eugen Uhlmann & Wolfgang Pfleiderer. (2004) Nucleotide, XVII. Synthese von homogenen Adenosyl‐3′,5′‐Oligomeren nach dem Phosphotriester‐Verfahren. Helvetica Chimica Acta 66:7, pages 2018-2030.
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Kelvin K. Ogilvie. 1983. Nucleosides, Nusleotides and their Biological Applications. Nucleosides, Nusleotides and their Biological Applications 209 256 .
Frank Himmelsbach & Wolfgang Pfleiderer. (1982) Bis-(p-nitrophenylethyl)phosphoromonochloridate, a new versatile phosphorylating agent. Tetrahedron Letters 23:46, pages 4793-4796.
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Dieter Flockerzi, Gunter Silber, Ramamurthy Charubala, Wilhelm Schlosser, Rajendra Singh Varma, Frank Creegan & Wolfgang Pfleiderer. (2006) Nucleoside, XXXVII. Synthese und Eigenschaften von 2′‐ O ‐ und 3′‐ O ‐( tert ‐Butyldi‐methylsilyl)‐5′‐ O ‐(4‐methoxytrityl)‐ sowie 2′,3′‐Bis‐ O ‐( tert ‐butyl‐dimethylsilyl)ribonucleosiden — Ausgangssubstanzen für Oligoribonucleotid‐Synthesen . Liebigs Annalen der Chemie 1981:9, pages 1568-1585.
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Gunter Silber, Dieter Flockerzi, Rajendra Singh Varma, Ramamurthy Charubala, Eugen Uhlmann & Wolfgang Pfleiderer. (2004) Nucleotide. XV. Synthese und Eigenschaften von 2′‐ O ‐ t ‐Butyldimethylsilyl‐5′‐ O ‐monomethoxytritylribonucleosid‐3′‐phosphotriestern, Ausgangssubstanzen für Oligonucleotid‐Synthesen . Helvetica Chimica Acta 64:5, pages 1704-1716.
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Eugen Uhlmann & Wolfgang Pfleiderer. (2004) Nucleotide. XIV. Substituierte β‐Phenyläthyl‐Gruppen. Neue Schutzgruppen für Oligonucleotid‐Synthesen nach dem Phosphorsäuretriester‐Verfahren. Helvetica Chimica Acta 64:5, pages 1688-1703.
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C. H. M. Verdegaal, P. L. Jansse, J. F. M. de Rooij, G. Veeneman & J. H. van Boom. (2010) A convenient synthesis of 2′‐ O ‐acetal‐ N 2 ‐acyl derivatives of riboguanosine . Recueil des Travaux Chimiques des Pays-Bas 100:5, pages 200-204.
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Willi Bannwarth & Wolfgang Pfleiderer. (2006) Nucleotide, XI. Synthese und Eigenschaften von Dinucleosidmonophosphaten mit Thymidin und 1‐(2′‐Desoxy‐β‐D‐ribofuranosyl)lumazinen als Bausteine. Liebigs Annalen der Chemie 1980:1, pages 50-64.
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Eugen Uhlmann & Wolfgang Pfleiderer. (1980) New improvements in oligonucleotide synthesis by use of the p-nitrophenylethyl phosphate blocking group and its deprotection by DBU or DBN. Tetrahedron Letters 21:13, pages 1181-1184.
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Ramamurthy Charubala & Wolfgang Pfleiderer. (2004) Nucleotide. X. Synthese und Eigenschaften von Dinucleosidmonophosphaten mit 2′‐Desoxyadenosin und 1‐(2′‐Desoxy‐β‐ D ‐ribofuranosyl)‐lumazinen als Bausteine . Helvetica Chimica Acta 62:4, pages 1179-1193.
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Colin B. Reese & Laval Yau. (1978) Reaction between 4-nitrobenzaldoximate ion and phosphotriesters. Tetrahedron Letters 19:45, pages 4443-4446.
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Colin B. Reese, Richard C. Titmas & Laval Yau. (1978) Oximate ion promoted unblocking of oligonucleotide phosphotriester intermediates. Tetrahedron Letters 19:30, pages 2727-2730.
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Colin B. Reese. (1978) The chemical synthesis of oligo- and poly-nucleotides by the phosphotriester approach. Tetrahedron 34:21, pages 3143-3179.
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C. B. REESE. (2016) ChemInform Abstract: AN APPROACH TO OLIGONUCLEOTIDE SYNTHESIS BY THE PHOSPHOTRIESTER METHOD. Chemischer Informationsdienst 8:13.
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Ryszard W. Adamiak, René Arentzen & Colin B. Reese. (1977) Attempts to suppress internucleotide cleavage during unblocking of oligonucleotide phosphotriester intermediates. Tetrahedron Letters 18:17, pages 1431-1434.
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