Stimson E R, Meinwald Y C, Montelione G T, Scheraga H A
Int J Pept Protein Res. 1986 Jun;27(6):569-82. doi: 10.1111/j.1399-3011.1986.tb01052.x.
Vicinal coupling constants between various nuclei provide backbone and side-chain conformational information for a series of asparagine- and tyrosine-containing peptides in DMSO and in H2O. By enriching Tyr of Ac-Asn-Pro-Tyr-NHMe with 15N, it has been possible to distinguish between the resonances of the two side-chain beta protons of Tyr. Analysis of the coupling constants in terms of the distributions of side-chain conformations in these peptides indicates that the addition of Asn to the Pro-Tyr sequence leads to a less random conformational distribution. When compared to the side-chain rotamer distribution of Ac-Asn-NHMe and Ac-Tyr-NHMe, particular Asn and Tyr side-chain conformations of Ac-Asn-Pro-Tyr-NHMe are stabilized in dimethylsulfoxide solution. The interaction(s) which stabilize a unique Tyr side-chain conformation of Ac-Asn-Pro-Tyr-NHMe in dimethylsulfoxide are not present in Ac-Ala-Pro-Tyr-NHMe and are unaffected by the addition of Val-Pro to the C-terminus of Asn-Pro-Tyr. In water, a preferential stabilization of one Asn side-chain conformation of Ac-Asn-Pro-Tyr-NHMe is also observed, while the Tyr side-chain rotamer distribution is similar to that of Ac-Tyr-NHMe. An interaction between the Asn side chain and the Pro-Tyr-NHMe backbone was previously shown to stabilize a beta-bend conformation at Pro-Tyr in water. Data are also presented for Ac-Tyr-Pro-Asn-NHMe, for which local interactions do not stabilize particular backbone conformations in dimethylsulfoxide or in water. The conformations of the peptides studied here are relatively insensitive to temperatures between 27 degrees and 62 degrees, both in dimethylsulfoxide and in water. The sequences Asn-Pro-Tyr and Tyr-Pro-Asn occur in ribonuclease A, and these tripeptides serve as models for the interactions involved in the folding of this protein.
不同原子核之间的邻位耦合常数为一系列含天冬酰胺和酪氨酸的肽在二甲基亚砜(DMSO)和水中提供了主链和侧链的构象信息。通过用(^{15}N)富集Ac-Asn-Pro-Tyr-NHMe中的酪氨酸(Tyr),得以区分Tyr两个侧链β质子的共振。根据这些肽中侧链构象的分布对耦合常数进行分析表明,在Pro-Tyr序列中添加天冬酰胺(Asn)会导致构象分布的随机性降低。与Ac-Asn-NHMe和Ac-Tyr-NHMe的侧链旋转异构体分布相比,Ac-Asn-Pro-Tyr-NHMe特定的Asn和Tyr侧链构象在二甲基亚砜溶液中得到了稳定。在二甲基亚砜中稳定Ac-Asn-Pro-Tyr-NHMe独特Tyr侧链构象的相互作用在Ac-Ala-Pro-Tyr-NHMe中不存在,并且不受在Asn-Pro-Tyr的C末端添加Val-Pro的影响。在水中,也观察到Ac-Asn-Pro-Tyr-NHMe的一种Asn侧链构象的优先稳定,而Tyr侧链旋转异构体分布与Ac-Tyr-NHMe相似。先前已表明Asn侧链与Pro-Tyr-NHMe主链之间的相互作用可在水中稳定Pro-Tyr处的β-转角构象。还给出了Ac-Tyr-Pro-Asn-NHMe的数据,对于该肽,局部相互作用在二甲基亚砜或水中均不能稳定特定的主链构象。本文研究的肽的构象在二甲基亚砜和水中对27摄氏度至62摄氏度之间的温度相对不敏感。核糖核酸酶A中存在序列Asn-Pro-Tyr和Tyr-Pro-Asn,这些三肽可作为该蛋白质折叠过程中涉及的相互作用的模型。