Baeuerle P A, Huttner W B
Cell Biology Program, European Molecular Biology Laboratory, Heidelberg, Federal Republic of Germany.
J Cell Biol. 1987 Dec;105(6 Pt 1):2655-64. doi: 10.1083/jcb.105.6.2655.
The trans-Golgi has been recognized as having a key role in terminal glycosylation and sorting of proteins. Here we show that tyrosine sulfation, a frequent modification of secretory proteins, occurs specifically in the trans-Golgi. The heavy chain of immunoglobulin M (IgM) produced by hybridoma cells was found to contain tyrosine sulfate. This finding allowed the comparison of the state of sulfation of the heavy chain with the state of processing of its N-linked oligosaccharides. First, the pre-trans-Golgi forms of the IgM heavy chain, which lacked galactose and sialic acid, were unsulfated, whereas the trans-Golgi form, identified by the presence of galactose and sialic acid, and the secreted form of the IgM heavy chain were sulfated. Second, the earliest form of the heavy chain detectable by sulfate labeling, as well as the heavy chain sulfated in a cell-free system in the absence of vesicle transport, already contained galactose and sialic acid. Third, sulfate-labeled IgM moved to the cell surface with kinetics identical to those of galactose-labeled IgM. Lastly, IgM labeled with sulfate at 20 degrees C was not transported to the cell surface at 20 degrees C but reached the cell surface at 37 degrees C. The data suggest that within the trans-Golgi, tyrosine sulfation of IgM occurred at least in part after terminal glycosylation and therefore appeared to be the last modification of this constitutively secreted protein before its exit from this compartment. Furthermore, the results establish the covalent modification of amino acid side chains as a novel function of the trans-Golgi.
反式高尔基体已被认为在蛋白质的终末糖基化和分选过程中起关键作用。在此我们表明,酪氨酸硫酸化作为分泌蛋白的一种常见修饰,特异性地发生在反式高尔基体中。发现杂交瘤细胞产生的免疫球蛋白M(IgM)重链含有硫酸酪氨酸。这一发现使得能够比较重链的硫酸化状态与其N-连接寡糖的加工状态。首先,缺乏半乳糖和唾液酸的IgM重链的高尔基体前体形式未被硫酸化,而通过半乳糖和唾液酸的存在鉴定的反式高尔基体形式以及IgM重链的分泌形式被硫酸化。其次,通过硫酸盐标记可检测到的重链最早形式,以及在无囊泡运输的无细胞系统中被硫酸化的重链,已经含有半乳糖和唾液酸。第三,硫酸化标记的IgM以与半乳糖标记的IgM相同的动力学移动到细胞表面。最后,在20℃下用硫酸盐标记的IgM在20℃下未转运到细胞表面,但在37℃下到达细胞表面。这些数据表明,在反式高尔基体中,IgM的酪氨酸硫酸化至少部分发生在终末糖基化之后,因此似乎是这种组成性分泌蛋白在离开该区室之前的最后修饰。此外,这些结果确立了氨基酸侧链的共价修饰作为反式高尔基体的一种新功能。