O-Acyl isopeptide method for peptide synthesis: Solvent effects in the synthesis of A beta 1-42 isopeptide using O-acyl isodipeptide unit
O-Acyl isopeptide method is an efficient synthetic method for peptides. We designed O-acyl isodipeptide units, Boc-Ser/Thr(Fmoc-Xaa)-OH, as important building blocks to enable routine use of the O-acyl isopeptide method. In the synthesis of an A1-42 isopeptide using O-acyl isodipeptide unit Boc-Ser(...
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Veröffentlicht in: | Journal of peptide science 2007-12, Vol.13 (12), p.868-874 |
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container_title | Journal of peptide science |
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creator | Taniguchi, Atsuhiko Yoshiya, Taku Abe, Naoko Fukao, Fukue Sohma, Youhei Kimura, Tooru Hayashi, Yoshio Kiso, Yoshiaki |
description | O-Acyl isopeptide method is an efficient synthetic method for peptides. We designed O-acyl isodipeptide units, Boc-Ser/Thr(Fmoc-Xaa)-OH, as important building blocks to enable routine use of the O-acyl isopeptide method. In the synthesis of an A1-42 isopeptide using O-acyl isodipeptide unit Boc-Ser(Fmoc-Gly)-OH, a side reaction, resulting in the deletion of Ser26 in the O-acyl isopeptide structure, was noticed during coupling of the unit. We observed that the side reaction occurred during the activation step and was solvent-dependent. In DMF or NMP, an intramolecular side reaction, originating from the activated species of the unit, occurred during the activation step. In non-polar solvents such as CHCl3 or CH2Cl2, the side reaction was less likely to occur. Using CH2Cl2 as solvent in coupling the unit, the target A1-42 isopeptide was synthesized with almost no major side reaction. |
doi_str_mv | 10.1002/psc.905 |
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We designed O-acyl isodipeptide units, Boc-Ser/Thr(Fmoc-Xaa)-OH, as important building blocks to enable routine use of the O-acyl isopeptide method. In the synthesis of an A1-42 isopeptide using O-acyl isodipeptide unit Boc-Ser(Fmoc-Gly)-OH, a side reaction, resulting in the deletion of Ser26 in the O-acyl isopeptide structure, was noticed during coupling of the unit. We observed that the side reaction occurred during the activation step and was solvent-dependent. In DMF or NMP, an intramolecular side reaction, originating from the activated species of the unit, occurred during the activation step. In non-polar solvents such as CHCl3 or CH2Cl2, the side reaction was less likely to occur. 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We designed O-acyl isodipeptide units, Boc-Ser/Thr(Fmoc-Xaa)-OH, as important building blocks to enable routine use of the O-acyl isopeptide method. In the synthesis of an A1-42 isopeptide using O-acyl isodipeptide unit Boc-Ser(Fmoc-Gly)-OH, a side reaction, resulting in the deletion of Ser26 in the O-acyl isopeptide structure, was noticed during coupling of the unit. We observed that the side reaction occurred during the activation step and was solvent-dependent. In DMF or NMP, an intramolecular side reaction, originating from the activated species of the unit, occurred during the activation step. In non-polar solvents such as CHCl3 or CH2Cl2, the side reaction was less likely to occur. 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We designed O-acyl isodipeptide units, Boc-Ser/Thr(Fmoc-Xaa)-OH, as important building blocks to enable routine use of the O-acyl isopeptide method. In the synthesis of an A1-42 isopeptide using O-acyl isodipeptide unit Boc-Ser(Fmoc-Gly)-OH, a side reaction, resulting in the deletion of Ser26 in the O-acyl isopeptide structure, was noticed during coupling of the unit. We observed that the side reaction occurred during the activation step and was solvent-dependent. In DMF or NMP, an intramolecular side reaction, originating from the activated species of the unit, occurred during the activation step. In non-polar solvents such as CHCl3 or CH2Cl2, the side reaction was less likely to occur. Using CH2Cl2 as solvent in coupling the unit, the target A1-42 isopeptide was synthesized with almost no major side reaction.</abstract><doi>10.1002/psc.905</doi><tpages>7</tpages></addata></record> |
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title | O-Acyl isopeptide method for peptide synthesis: Solvent effects in the synthesis of A beta 1-42 isopeptide using O-acyl isodipeptide unit |
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