Iqbal M, Nagaraj R, Balaram P
Int J Pept Protein Res. 1981 Aug;18(2):208-13.
The benzylic methylene protons in a large number of benzyloxycarbonyl alpha-aminoisobutyric acid (Z-Aib) containing peptides, show chemical shift nonequivalence. The magnitude of the geminal nonequivalence is correlated with the involvement of the urethane carbonyl group, in an intramolecular hydrogen bond. Studies of the model compounds Z-Aib-Aib-Ala-NHMe, and Z-Aib-Aib-Aib-Pro-OMe clearly establish the presence of intramolecular hydrogen bonds, involving the urethane CO group. In both compounds marked anisochrony of the benzylic methylene protons is demonstrated. In Z-Aib-Aib-Pro-OMe, where a 4 leads to 1 hydrogen bonded beta-turn is not possible, the benzylic-CH2-protons appear as a singlet in CDCl3 and have a very small chemical shift difference in (CD3)2SO. The observation of such nonequivalence is of value in establishing whether the amino terminal Aib-Pro beta-turn is retained in large peptide-fragments of alamethicin.
大量含有苄氧羰基α-氨基异丁酸(Z-Aib)的肽中,苄基亚甲基质子显示出化学位移不等价性。偕偶不等价的程度与氨基甲酸酯羰基参与分子内氢键有关。对模型化合物Z-Aib-Aib-Ala-NHMe和Z-Aib-Aib-Aib-Pro-OMe的研究清楚地证实了涉及氨基甲酸酯羰基的分子内氢键的存在。在这两种化合物中,均证明了苄基亚甲基质子存在明显的不同时性。在Z-Aib-Aib-Pro-OMe中,由于不可能形成4→1氢键的β-转角,苄基-CH2-质子在CDCl3中表现为单峰,在(CD3)2SO中的化学位移差异非常小。观察到这种不等价性对于确定alamethicin的大肽片段中氨基末端Aib-Proβ-转角是否保留具有重要价值。