Urban J, Parczyk K, Leutz A, Kayne M, Kondor-Koch C
Abt. Molekulare Genetik, Universität Frankfurt, Federal Republic of Germany.
J Cell Biol. 1987 Dec;105(6 Pt 1):2735-43. doi: 10.1083/jcb.105.6.2735.
The biosynthesis, processing, and apical secretion of a group of polypeptides (Kondor-Koch, C., R. Bravo, S. D. Fuller, D. Cutler, and H. Garoff. 1985. Cell. 43:297-306) are studied in MDCK cells using a specific polyclonal antiserum. These polypeptides are synthesized as a precursor protein which has an apparent Mr of 65,000 in its high mannose form. This precursor is converted into a protein with an apparent Mr of 80,000 containing complex carbohydrates and sulfate. After intracellular cleavage of the 80-kD protein, the 35-45-kD subunits are secreted as an 80-kD glycoprotein complex (gp 80) linked together by disulfide bonds. Secretion of the protein complex occurs by a constitutive pathway at the apical surface of the epithelial monolayer. Since the immediate post-translational precursor, the 65-kD protein, is hydrophilic in nature as shown by its partitioning behavior in a phase-separated Triton X-114 solution, gp 80 is segregated into the apical exocytotic pathway as a soluble molecule. The proteolytic maturation of gp 80 is blocked in the presence of chloroquine and its secretion is retarded. The 80-kD precursor is released at the apical cell surface, demonstrating that proteolytic processing is not necessary for the apical secretion of this protein. If N-glycosylation is inhibited by tunicamycin treatment the protein is secreted in equal amounts at both cell surfaces, indicating a role of the carbohydrate moieties in the vectorial transport of this protein.
利用一种特异性多克隆抗血清,在MDCK细胞中研究了一组多肽的生物合成、加工及顶端分泌过程(孔多尔 - 科赫,C.,R. 布拉沃,S. D. 富勒,D. 卡特勒和H. 加罗夫。1985年。《细胞》。43:297 - 306)。这些多肽作为前体蛋白合成,其高甘露糖形式的表观分子量为65,000。该前体转化为一种表观分子量为80,000的蛋白质,含有复合碳水化合物和硫酸盐。80-kD蛋白在细胞内裂解后,35 - 45-kD亚基作为通过二硫键连接在一起的80-kD糖蛋白复合物(gp 80)分泌。蛋白复合物通过组成型途径在上皮单层的顶端表面分泌。由于翻译后立即产生的前体,即65-kD蛋白,其在相分离的Triton X - 114溶液中的分配行为表明其本质上是亲水性的,gp 80作为可溶性分子被隔离到顶端胞吐途径中。在氯喹存在下,gp 80的蛋白水解成熟受到阻断,其分泌受到抑制。80-kD前体在顶端细胞表面释放,表明该蛋白的顶端分泌不需要蛋白水解加工。如果用衣霉素处理抑制N-糖基化,该蛋白在细胞的两个表面等量分泌,表明碳水化合物部分在该蛋白的定向运输中起作用。