Walter R, Prasad K U, Deslauriers R, Smith I C
Proc Natl Acad Sci U S A. 1973 Jul;70(7):2086-90. doi: 10.1073/pnas.70.7.2086.
Oxytocin, arginine vasopressin, lysine vasopressin, arginine vasotocin, as well as their cyclic and acyclic analogs, were studied by carbon-13 nuclear magnetic resonance spectroscopy in deuterium oxide and deuterated dimethylsulfoxide. Fourier-transformed spectra were obtained at 25.16 MHz. The resonances of all carbon atoms have been assigned in both solvent systems; this includes tentative assignments of the carbonyl carbons. The spectra of arginine vasopressin and lysine vasopressin are essentially identical when compared in D(2)O or dimethylsulfoxide, but they differ from those of oxytocin. The spectrum of arginine vasotocin in D(2)O is intermediate between those of oxytocin and the vasopressins. These spectral differences are not only due to variations in constituent amino acids but are also a reflection of conformational differences of oxytocin, arginine vasotocin, and the vasopressins. All hormones are sensitive to changes in hydrogen ion concentration in both solvents; this was not observed with deamino analogs, which lack the terminal amino group.
采用碳 - 13核磁共振光谱法,在氧化氘和氘代二甲基亚砜中对催产素、精氨酸加压素、赖氨酸加压素、精氨酸催产素及其环状和非环状类似物进行了研究。在25.16兆赫兹下获得了傅里叶变换光谱。在两种溶剂体系中均已对所有碳原子的共振峰进行了归属;这包括羰基碳的初步归属。在重水(D₂O)或二甲基亚砜中比较时,精氨酸加压素和赖氨酸加压素的光谱基本相同,但与催产素的光谱不同。重水(D₂O)中精氨酸催产素的光谱介于催产素和加压素的光谱之间。这些光谱差异不仅归因于组成氨基酸的变化,也是催产素、精氨酸催产素和加压素构象差异的反映。所有激素在两种溶剂中均对氢离子浓度的变化敏感;而缺乏末端氨基的脱氨基类似物则未观察到这种情况。