Fallon R J
Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri.
J Biol Chem. 1990 Feb 25;265(6):3401-6.
The asialoglycoprotein (ASGP) receptor undergoes constitutive endocytosis through the coated pit/coated vesicle pathway in hepatocytes. Studies on HepG2 cells have shown that the receptor is phosphorylated at serine under control conditions and following protein kinase C stimulation. This study examined whether the ASGP receptor could also serve as a substrate for a tyrosine kinase in HepG2 cells. 32P labeling was performed in membrane preparations, in permeabilized cells at 4 degrees C, and in intact cells at 37 degrees C. The phosphorylated ASGP receptor was isolated by immunoprecipitation, hydrolyzed in 6 N HCl at 110 degrees C, and analyzed by two-dimensional high voltage electrophoresis. The receptor isolated from a membrane preparation incubated in vitro with [gamma-32P]ATP incorporated radiolabel predominantly (greater than 90%) into phosphotyrosine. ASGP receptor phosphorylation at both tyrosine and serine was detected in intact cells incubated with phosphatase inhibitors for 60 min at 37 degrees C. The presence of both phenylarsine oxide (20 microM) and sodium orthovanadate (200 microM) was required for tyrosine phosphorylation. Use of these inhibitors together resulted in a 16.4-fold increase in phosphorylation of the immunoprecipitated ASGP receptor, whereas phosphorylation of total HepG2 membrane proteins was not significantly augmented by this procedure. Selective proteolytic digestion of ASGP receptors in isolated vesicles demonstrated that the phosphorylation site identified in these studies is located at tyrosine 5 in the cytoplasmic tail.
去唾液酸糖蛋白(ASGP)受体通过肝细胞中的被膜小窝/被膜小泡途径进行组成型内吞作用。对HepG2细胞的研究表明,在对照条件下以及蛋白激酶C刺激后,该受体在丝氨酸处被磷酸化。本研究检测了ASGP受体是否也可作为HepG2细胞中酪氨酸激酶的底物。在膜制剂、4℃的透化细胞以及37℃的完整细胞中进行³²P标记。通过免疫沉淀分离磷酸化的ASGP受体,在110℃下用6N HCl水解,并通过二维高压电泳进行分析。从与[γ-³²P]ATP体外孵育的膜制剂中分离的受体,放射性标记主要(超过90%)掺入磷酸酪氨酸。在37℃下用磷酸酶抑制剂孵育60分钟的完整细胞中,检测到ASGP受体在酪氨酸和丝氨酸处均发生磷酸化。酪氨酸磷酸化需要同时存在氧化苯胂(20μM)和原钒酸钠(200μM)。同时使用这些抑制剂导致免疫沉淀的ASGP受体磷酸化增加16.4倍,而该操作并未显著增加HepG2总膜蛋白的磷酸化。对分离小泡中ASGP受体的选择性蛋白水解消化表明,这些研究中确定的磷酸化位点位于细胞质尾部的酪氨酸5处。