Tanaka N, Takegawa K
Department of Life Sciences, Faculty of Agriculture, Kagawa University, Miki-cho, Kagawa 761-0795, Japan.
Yeast. 2001 Jun;18(8):745-57. doi: 10.1002/yea.725.
Galactosylation of glycoproteins in the fission yeast Schizosaccharomyces pombe requires the transport of UDP-galactose as substrate for the galactosyltransferase into the lumen of the Golgi apparatus, which is achieved by the UDP-galactose transporter. We isolated a mutant (gms1) that is deficient in galactosylation of cell surface glycoproteins in Sz.pombe, and found that the gms1(+) gene encodes a UDP-galactose transporter. In the prediction of secondary structure of the Gms1 protein, an eight-membrane-spanning structure was obtained. Fluorescent microscopy revealed the functional Gms1-GFP fusion protein to be stably localized at the Golgi membrane. Sequencing analysis of the coding region of Gms1p derived from galactosylation-defective mutants identified a single amino acid mutation (A102T or A258E) located within the putative transmembrane region, helix 2 or helix 7, respectively. The mutagenized Gms1(A102T or A258E)p exhibited loss of UDP-galactose transport activity but no change in the localization to the Golgi membrane. The C-terminal truncated Gms1p mutants demonstrated that the C-terminal hydrophilic region was dispensable for targeting and function as UDP-galactose transporter at the Golgi membrane. We suggest that the putative eighth (the most C-terminus-proximal) transmembrane helix of Gms1p is critical to targeting from ER to the Golgi membrane.
裂殖酵母粟酒裂殖酵母中糖蛋白的半乳糖基化需要将作为半乳糖基转移酶底物的UDP-半乳糖转运到高尔基体腔中,这是通过UDP-半乳糖转运体实现的。我们分离出了一个在粟酒裂殖酵母中细胞表面糖蛋白半乳糖基化缺陷的突变体(gms1),并发现gms1(+)基因编码一种UDP-半乳糖转运体。在对Gms1蛋白的二级结构预测中,获得了一个跨膜八次的结构。荧光显微镜显示功能性的Gms1-GFP融合蛋白稳定地定位在高尔基体膜上。对来自半乳糖基化缺陷突变体的Gms1p编码区的测序分析确定了分别位于假定跨膜区、螺旋2或螺旋7内的单个氨基酸突变(A102T或A258E)。诱变后的Gms1(A102T或A258E)p表现出UDP-半乳糖转运活性丧失,但在高尔基体膜上的定位没有变化。C末端截短的Gms1p突变体表明,C末端亲水区对于在高尔基体膜上作为UDP-半乳糖转运体的靶向和功能是可有可无的。我们认为Gms1p假定的第八个(最靠近C末端)跨膜螺旋对于从内质网靶向高尔基体膜至关重要。