Miller K, Beardmore J, Kanety H, Schlessinger J, Hopkins C R
J Cell Biol. 1986 Feb;102(2):500-9. doi: 10.1083/jcb.102.2.500.
We have followed the internalization pathway of both epidermal growth factor (EGF) and its receptor in human epidermoid carcinoma (A431) cells. Using EGF conjugated with horseradish peroxidase and anti-receptor monoclonal antibodies (TL5 and EGFR1) coupled either directly or indirectly to colloidal gold we have identified an extensive elaboration of endosomal compartments, consisting of a peripheral branching network of tubular cisternae connected to vacuolar elements that contain small vesicles and a pericentriolar compartment consisting of a tubular cisternal network connected to multivesicular bodies. Immunocytochemistry on frozen thin sections using receptor-specific antibody-gold revealed that at 4 degrees C in the presence of EGF, receptors were mainly on the plasma membrane and, to a lesser extent, within some elements of both the peripheral and pericentriolar endosomal compartments. Upon warming to 37 degrees C there was an EGF-dependent redistribution of most binding sites, first to the peripheral endosome compartment and then to the pericentriolar compartment and lysosomes. Upon warming only to 20 degrees C the ligand-receptor complex accumulated in the pericentriolar compartment. Acid phosphatase cytochemistry identifies hydrolytic activity only within secondary lysosomes and trans cisternae of the Golgi stacks. Together these observations suggest that the prelysosomal endosome compartment extends to the pericentriolar complex and that the transfer of EGF receptor complexes to the acid phosphatase-positive lysosome involves a discontinuous, temperature-dependent step.
我们追踪了人表皮样癌(A431)细胞中表皮生长因子(EGF)及其受体的内化途径。利用与辣根过氧化物酶偶联的EGF以及直接或间接与胶体金偶联的抗受体单克隆抗体(TL5和EGFR1),我们鉴定出了内体区室的广泛精细结构,其由与含有小泡的液泡元件相连的管状池的外周分支网络以及由与多囊泡体相连的管状池网络组成的中心粒周围区室构成。使用受体特异性抗体 - 金对冷冻薄片进行免疫细胞化学分析显示,在4℃且存在EGF的情况下,受体主要位于质膜上,并且在较小程度上位于外周和中心粒周围内体区室的一些元件内。升温至37℃时,大多数结合位点会发生EGF依赖性重新分布,首先转移至外周内体区室,然后转移至中心粒周围区室和溶酶体。仅升温至20℃时,配体 - 受体复合物会在中心粒周围区室中积累。酸性磷酸酶细胞化学仅在高尔基复合体的次级溶酶体和反式池中鉴定出水解活性。这些观察结果共同表明,溶酶体前内体区室延伸至中心粒周围复合体,并且EGF受体复合物向酸性磷酸酶阳性溶酶体的转移涉及一个不连续的、温度依赖性步骤。