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L-丙氨酸肽的13C核磁共振研究。

13C n.m.r. study of L-alanine peptides.

作者信息

Mitra A K, Ostashevsky I, Brewer C F

出版信息

Int J Pept Protein Res. 1983 Oct;22(4):502-8. doi: 10.1111/j.1399-3011.1983.tb02121.x.

Abstract

The di-, tri-, and tetrapeptides of L-alanine have been studied in aqueous solution by 13C n.m.r. spectroscopy at 25 and 50 MHz. By using selectively 13C enriched analogs containing either 90% 13C methyl or carbonyl carbons and measurements as a function of pH, assignment of the chemical shifts of the peptides has been made. T1 and NOE measurements of the peptides in their cationic, anionic, and zwitterionic states have been recorded as a function of concentration. The results show considerable segmental motion along the backbone carbons of the peptides, with only small changes occurring in the dynamic motions of the peptides as their charge states are altered. The lack of concentration dependence of the chemical shift and T1 values, as well as the similarity of T1 values for individual peptides in the three charge states, indicate that the peptides do not self-associate in aqueous solution.

摘要

通过在25和50兆赫兹下的13C核磁共振光谱,对L-丙氨酸的二肽、三肽和四肽在水溶液中进行了研究。通过使用选择性富含13C的类似物,其含有90%的13C甲基或羰基碳,并根据pH值进行测量,对肽的化学位移进行了归属。已记录了肽在阳离子、阴离子和两性离子状态下的T1和核Overhauser效应(NOE)测量值与浓度的函数关系。结果表明,沿着肽的主链碳存在相当大的片段运动,随着肽电荷状态的改变,其动态运动仅发生微小变化。化学位移和T1值缺乏浓度依赖性,以及三种电荷状态下单个肽的T1值相似,表明肽在水溶液中不会自缔合。

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