May V, Ouafik L, Eipper B A, Braas K M
Department of Anatomy and Neurobiology, University of Vermont College of Medicine, Burlington 05405.
Endocrinology. 1990 Jul;127(1):358-64. doi: 10.1210/endo-127-1-358.
The pituitary gland contains high levels of peptidylglycine alpha-amidating monooxygenase (PAM) activity and mRNA. Using affinity-purified rabbit polyclonal antisera generated to synthetic PAM peptides and PAM RNA probes, immunocytochemical and in situ hybridization studies were conducted to determine the tissue disposition and cell types expressing PAM in the adult male rat pituitary gland. PAM immunoreactivity was present at varying levels in nearly all of the anterior pituitary cells; one cell population stained intensely, while others stained moderately or weakly. These results correlated well with in situ hybridization studies that demonstrated high levels of PAM mRNA in a subpopulation comprising approximately 10-15% of the anterior pituitary cells. Based upon immunocytochemistry, intermediate pituitary lobe cells were divided into an intensely stained and a moderately stained group. PAM staining was also present in neural lobe fibers. Immunocytochemical staining of serial pituitary tissue sections for PAM and other pituitary hormones demonstrated that the anterior pituitary cells intensely stained for PAM represented a subpopulation of the gonadotropes. PAM was also identified at moderate levels in corticotropes and at lower levels in sommatotropes and lactotropes. These results suggest that many anterior pituitary cells are capable of producing amidated peptides along with their major peptide hormone.
垂体中含有高水平的肽基甘氨酸α-酰胺化单加氧酶(PAM)活性和mRNA。利用针对合成PAM肽和PAM RNA探针产生的亲和纯化兔多克隆抗血清,进行了免疫细胞化学和原位杂交研究,以确定成年雄性大鼠垂体中表达PAM的组织分布和细胞类型。几乎所有垂体前叶细胞中都存在不同水平的PAM免疫反应性;一组细胞染色强烈,而其他细胞染色中等或较弱。这些结果与原位杂交研究结果高度相关,原位杂交研究表明,在占垂体前叶细胞约10-15%的一个亚群中存在高水平的PAM mRNA。基于免疫细胞化学,垂体中间叶细胞分为强染色组和中等染色组。神经叶纤维中也存在PAM染色。对垂体连续组织切片进行PAM和其他垂体激素的免疫细胞化学染色表明,PAM染色强烈的垂体前叶细胞代表促性腺激素细胞的一个亚群。在促肾上腺皮质激素细胞中也检测到中等水平的PAM,在生长激素细胞和催乳激素细胞中水平较低。这些结果表明,许多垂体前叶细胞在产生主要肽类激素的同时,也能够产生酰胺化肽。