Vandesande F, Dierickx K
Cell Tissue Res. 1976 Jan 27;165(3):307-16. doi: 10.1007/BF00222435.
Immuno-enzyme cytochemical investigations have shown that, (1) the hypothalamic supraoptic and paraventricular nuclei of the Brattleboro rat, as in the normal rat, contain separate neurons which produce oxytocin + neurophysin; (2) the hereditary inability of the Brattleboro rat to synthesize vasopressin and its associated neurophysin is due to a biochemical defect of separate "neurophysin-vasopressin" neurons in the supraoptic and the paraventricular nuclei. These observations strongly support the hypotheses that (1) vasopressin and its associated neurophysin are formed via a common precursor, and (2) the initial point of intracellular appearance of the hereditary defect in the Brattleboro rat lies in the synthesis of this precursor, which occurs on ribosomes. Moreover, observations have demonstrated that, in the Brattleboro rat, in addition to the hereditary inability of the hypothalamic magnocellular neurosecretory system to synthesize vasopressin, there also exists a similar hereditary defect in the hypothetical parvicellular suprachiasmatic-median eminence neurosecretory system.
(1)布拉特洛伯罗大鼠的下丘脑视上核和室旁核,与正常大鼠一样,含有分泌催产素+神经垂体素的不同神经元;(2)布拉特洛伯罗大鼠遗传性地无法合成血管升压素及其相关神经垂体素,是由于视上核和室旁核中不同的“神经垂体素-血管升压素”神经元存在生化缺陷。这些观察结果有力地支持了以下假说:(1)血管升压素及其相关神经垂体素是通过共同前体形成的;(2)布拉特洛伯罗大鼠遗传性缺陷在细胞内最初出现的点在于这种前体的合成,该合成发生在核糖体上。此外,观察表明,在布拉特洛伯罗大鼠中,除了下丘脑大细胞神经分泌系统遗传性地无法合成血管升压素外,在假定的小细胞视交叉上核-正中隆起神经分泌系统中也存在类似的遗传性缺陷。