Chauvet M T, Coffe G, Chauvet J, Acher R
C R Seances Soc Biol Fil. 1976;170(2):257-69.
Neurohypophysial hormone-Neurophysin complexes have been prepared from posterior pituitary glands of Artiodactyla (ox, sheep, pig), Perissodactyla (horse) and Cetacea (whale), by fractionated salt precipitation. The components have been separated by molecular sieving in 0.2 M acetic acid and neurophysins have been purified by ion-exchange chromatography on DEAE-Sephadex A-50. Two types of neurophysins, MSEL-neurophysins and VLDV-neurophysins, can be distinguished according to the amino acid residues in positions 2, 3, 6 and 7. MSEL-neurophysins of sheep, ox and pig have been characterized by the amino acid sequence. Ovine and bovine MSEL-neurophysins are nearly identical (one substitution out of 95 residues) and porcine MSEL-neurophysin is very similar (four substitutions and an apparent 3-residue C-terminal deletion). The biological function of neurophysins might be the carriage of neurohypophysial hormones but in this respect, each type of neurophysin is not clearly specific for a given hormone. On the other hand, each neurophysin might share a common precursor with a neurohypophysial hormone, the two parts remaining associated after cleavage. However, in the sheep posterior pituitary gland, the molar proportions of the two types of neurophysins, oxytocin and arginine vasopressin, are not equal, MSEL-neurophysin being more abundant than the other components. If a common precursor exists, neurophysins and neurohypophysial hormones are not merely produced by a simple cleavage mechanism.
通过分级盐沉淀法,从偶蹄目动物(牛、羊、猪)、奇蹄目动物(马)和鲸目动物(鲸)的脑垂体后叶中制备了神经垂体激素-神经垂体素复合物。通过在0.2M乙酸中进行分子筛分离各组分,并通过在DEAE-葡聚糖A-50上进行离子交换色谱法纯化神经垂体素。根据第2、3、6和7位的氨基酸残基,可以区分出两种类型的神经垂体素,即MSEL-神经垂体素和VLDV-神经垂体素。绵羊、牛和猪的MSEL-神经垂体素已通过氨基酸序列进行了表征。绵羊和牛的MSEL-神经垂体素几乎相同(95个残基中有1个替换),猪的MSEL-神经垂体素非常相似(4个替换和明显的3个残基C末端缺失)。神经垂体素的生物学功能可能是携带神经垂体激素,但在这方面,每种类型的神经垂体素对特定激素的特异性并不明确。另一方面,每种神经垂体素可能与一种神经垂体激素共享一个共同的前体,这两部分在裂解后仍保持关联。然而,在绵羊脑垂体后叶中,两种类型的神经垂体素、催产素和精氨酸加压素的摩尔比例并不相等,MSEL-神经垂体素比其他组分更为丰富。如果存在共同前体,那么神经垂体素和神经垂体激素并非仅仅通过简单的裂解机制产生。