Nilsson M, Ekholm R, Fayet G, Maroux S, Ericson L E
Department of Anatomy, University of Göteborg, Sweden.
Cell Tissue Res. 1987 Nov;250(2):295-303. doi: 10.1007/BF00219074.
The ultrastructural location of aminopeptidase N on the cell surface of isolated porcine thyroid follicle cells was studied with immunocytochemistry using antibodies against intestinal aminopeptidase N and protein A-colloidal gold. Gold particles, indicating immunoreactivity, were selectively attached to the apical cell surface. Occasionally, there was a sparse labelling of the basal cell surface. In follicles kept at 4 degrees C most gold particles at the apical cell surface appeared as clusters, with each gold particle situated at a constant distance of about 20 nm from the membrane surface. The gold particles were concentrated on the membranes of microvilli, in comparison to the smooth (intermicrovillar) portions of the apical plasma membrane. In follicles incubated at 37 degrees C for 5-180 min gold particles were slowly internalized by predominantly smooth-surfaced micropinocytic vesicles and subsequently appeared in colloid droplets and lysosomes. Gold particles were not observed in Golgi cisternae. TSH did not appear to influence the rate of internalization. TSH-induced pseudopods were unlabeled. Our electron-microscopic observations confirm previous immunofluorescence-microscopic evidence that aminopeptidase N is selectively expressed in the apical plasma membrane domain in the thyroid follicle cell. Furthermore, aminopeptidase N appears to be distributed in microdomains within the apical plasma membrane. Earlier indications of molecular differences between the pseudopod membrane and the apical plasma membrane proper are further emphasized.
利用抗肠氨肽酶N抗体和蛋白A-胶体金,通过免疫细胞化学方法研究了氨肽酶N在分离的猪甲状腺滤泡细胞表面的超微结构定位。显示免疫反应性的金颗粒选择性地附着在细胞顶端表面。偶尔,基底细胞表面有稀疏标记。在4℃保存的滤泡中,顶端细胞表面的大多数金颗粒呈簇状,每个金颗粒与膜表面保持约20nm的恒定距离。与顶端质膜的光滑(微绒毛间)部分相比,金颗粒集中在微绒毛膜上。在37℃孵育5 - 180分钟的滤泡中,金颗粒主要被表面光滑的微胞饮小泡缓慢内化,随后出现在胶体小滴和溶酶体中。在高尔基池中未观察到金颗粒。促甲状腺激素似乎不影响内化速率。促甲状腺激素诱导的伪足未被标记。我们的电子显微镜观察证实了先前免疫荧光显微镜的证据,即氨肽酶N在甲状腺滤泡细胞的顶端质膜区域选择性表达。此外,氨肽酶N似乎分布在顶端质膜内的微区。进一步强调了伪足膜与顶端质膜本身分子差异的早期迹象。