首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Studies on intramolecular hydrogen bonding between the pyridine nitrogen and the amide hydrogen of the peptide: synthesis and conformational analysis of tripeptides containing novel amino acids with a pyridine ring
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Studies on intramolecular hydrogen bonding between the pyridine nitrogen and the amide hydrogen of the peptide: synthesis and conformational analysis of tripeptides containing novel amino acids with a pyridine ring

机译:肽吡啶氮与肽酰胺氢与吡啶环含有新氨基酸的三肽的合成及构象分析

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For the first time tripeptides, Z-AA(1)-Xaa-AA(3)-OMe (AA(1) and AA(3) = Gly or Aib, Xaa = 2Pmg and 2Pyg) were prepared containing alpha-methyl-alpha-(2-pyridyl)glycine (2Pmg) and alpha-(2-pyridyl)glycine (2Pyg) by solid-phase Ugi reaction. These results clearly indicate that for the preparation of tripeptides containing an amino acid with a pyridine ring, the solid-phase Ugi reaction is very useful. NMR analysis clarified that 2Pmg-containing tripeptides adopt a unique conformation with an intramolecular hydrogen bond between 2Pmg-NH and the pyridine nitrogen. However, in the case of Z-Gly-Pyg-Gly-Me, the intramolecular hydrogen bonding between 2Pyg-NH and the pyridine nitrogen was not observed, whereas Z-Aib-2Pyg-Aib-OMe adopts a unique conformation with an intramolecular hydrogen bond between 2Pyg-NH and a pyridine nitrogen. Conformational analysis of the tripeptides, Z-AA(1)-Xaa-AA(3)-OMe (AA(1), AA(3) = Gly or Aib, Xaa = alpha,alpha-di(2-pyridyl)glycine (2Dpy), alpha-phenyl-alpha-(2-pyridyl)glycine (2Ppg), 2Pmg and 2Pyg), clarified that when an alpha,alpha-disubstituted glycine with a 2-pyridyl group at an alpha-carbon atom is introduced into any peptide, an intramolecular hydrogen bond between a pyridine nitrogen and an amide proton is formed and conformational mobility of the peptide backbone is. restricted. Copyright (c) 2005 European Peptide Society and John Wiley & Sons, Ltd.
机译:为了第一次三肽,制备含有α-甲基-α-α-甲基-α-α-甲基-α-α-XAA-AA(3)-XAA-AA(3)-XAA-AA(3)-XAA-AA(3)= GLY或AIB,XAA = 2PMG和2PYG) - 通过固相UGI反应(2-吡啶基)甘氨酸(2-吡啶基)和α-(2-吡啶基)甘氨酸(2pyg)。这些结果清楚地表明,为了制备含有吡啶环的氨基酸的三肽,固相UGI反应非常有用。 NMR分析澄清了含有2PMG的三肽采用2PMg-NH和吡啶氮之间的分子内氢键采用独特的构象。然而,在Z-Gly-Pyg-gly-Me的情况下,未观察到2pyg-NH和吡啶氮之间的分子内氢键,而Z-AIB-2PYG-AIB-OM与分子内氢相采用独特的构象在2pyg-NH和吡啶氮之间的粘合。三肽的构象分析,Z-AA(1)-XAA-AA(3)-OM(AA(1),AA(3)= Gly或Aib,XAA =α,α-Di(2-吡啶基)甘氨酸( 2dpy),α-苯基 - α-(2-吡啶基)甘氨酸(2ppg),2pmg和2pyg),阐明了当α-二吡啶基的α-二取代的甘氨酸以α-碳原子中的α-二取代的甘氨酸引入任何肽,形成吡啶氮和酰胺质子之间的分子内氢键,并形成肽骨架的构象迁移率。受限制的。版权所有(c)2005年欧洲肽协会和约翰瓦西和儿子有限公司

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