Callard G V, Specker J L, Knapp J, Nishioka R S, Bern H A
Department of Biology, Boston University, Massachusetts 02215.
Gen Comp Endocrinol. 1988 Jul;71(1):70-9. doi: 10.1016/0016-6480(88)90296-1.
Aromatase has been identified in the telostean, avian, and mammalian pituitaries, although its cellular location(s) is not yet certain. To address this question, experiments were performed in tilapia (Oreochromis mossambicus), a species which has been well characterized with respect to the intraglandular distribution of the different pituitary cell types. To estimate aromatase, glands were microdissected into rostral pars distalis (RPD), proximal pars distalis (PPD), and neurointermediate lobe (NIL) and organs were cultured in the presence of [3H]androstenedione for 16-24 hr. [3H]Estrogen products were isolated and quantified after ether extraction, hydrolysis with glucuronidase-sulfatase, thin-layer chromatography, and phenolic partition. Authentic estrone or estradiol-17 beta were produced by all pituitary regions and also by the urophyseal region of the spinal cord. Aromatase was two to five times higher in PPD than in RPD or NIL and similar to activity in adjacent hypothalamus-preoptic area (HPOA). Much lower estrogen yields were obtained in cultures of cerebellum, urophysis, and other cord regions. Since the PPD contains most of the somatotropes, these data are consistent with earlier studies implicating GH3/GH4 cell strains as an enriched enzyme source, although its presence in other cell types cannot be ruled out. The unusually high and localized aromatase in tilapia pituitary renders this species a useful model for studying the targets and functional importance of estrogen as a parahormone in the pituitary.
在硬骨鱼、鸟类和哺乳动物的垂体中已鉴定出芳香化酶,尽管其细胞定位尚未确定。为了解决这个问题,我们以罗非鱼(莫桑比克罗非鱼)为实验对象,该物种在不同垂体细胞类型的腺内分布方面已有充分的特征描述。为了评估芳香化酶,将腺体显微解剖为吻端远侧部(RPD)、近端远侧部(PPD)和神经中间叶(NIL),并在[3H]雄烯二酮存在的情况下培养16 - 24小时。[3H]雌激素产物经乙醚萃取、用葡萄糖醛酸酶 - 硫酸酯酶水解、薄层色谱和酚类分配后进行分离和定量。所有垂体区域以及脊髓的尾垂体区域均产生了 authentic 雌酮或雌二醇 - 17β。PPD中的芳香化酶活性比RPD或NIL高两到五倍,与相邻下丘脑 - 视前区(HPOA)的活性相似。在小脑、尾垂体和其他脊髓区域的培养物中获得的雌激素产量要低得多。由于PPD中含有大多数生长激素细胞,这些数据与早期将GH3/GH4细胞系作为丰富酶源的研究一致,尽管不能排除其在其他细胞类型中的存在。罗非鱼垂体中异常高且局部化的芳香化酶使其成为研究雌激素作为垂体旁激素的靶标和功能重要性的有用模型。