Tanabe Yuuki, Arai Seisuke, Wada Ikuo, Adachi Hiroyuki, Kamakura Takashi, Yoda Koji, Noda Yoichi
Department of Biotechnology, The University of Tokyo.
Department of Applied Biological Science, Tokyo University of Science.
J Gen Appl Microbiol. 2019 Sep 14;65(4):180-187. doi: 10.2323/jgam.2018.09.001. Epub 2019 Jan 31.
After being translocated into the ER lumen, membrane and secretory proteins are transported from the ER to the early Golgi by COPII vesicles. Incorporation of these cargo proteins into COPII vesicles are facilitated either by direct interaction of cargo proteins with COPII coat proteins or by ER exit adaptor proteins which mediate the interaction of cargo proteins with COPII coat proteins. Svp26 is one of the ER exit adaptor proteins in yeast Saccharomyces cerevisiae. ER exit of several type II membrane proteins have been reported to be facilitated by Svp26. We demonstrate here that efficient incorporation of Mnt2 and Mnt3 into COPII vesicles is also dependent on the function of Svp26. Mnt2 and Mnt3 are Golgi-localized α-1,3-mannosyltransferases with type II membrane topology involved in protein O-glycosylation. Immunoisolation of the yeast Golgi subcompartments quantitatively showed that Mnt2 and Mnt3 are more abundant in the early Golgi fraction than in the late Golgi fraction. Subcellular fractionation and fluorescence microscopy showed that deletion of the SVP26 gene results in the accumulation of Mnt2 and Mnt3 in ER. Using an in vitro COPII vesicle formation assay, we further demonstrate that Svp26 facilitates incorporation of Mnt2 and Mnt3 into COPII vesicles. Finally, we showed that Mnt2 and Mnt3 were co-immunoprecipitated with Svp26 from digitonin-solubilized membranes. These results indicate that Svp26 functions as an ER exit adaptor protein of Mnt2 and Mnt3.
在转运到内质网腔后,膜蛋白和分泌蛋白通过COPII囊泡从内质网运输到早期高尔基体。这些货物蛋白通过货物蛋白与COPII衣被蛋白的直接相互作用或通过介导货物蛋白与COPII衣被蛋白相互作用的内质网出口衔接蛋白促进其纳入COPII囊泡。Svp26是酿酒酵母中的内质网出口衔接蛋白之一。据报道,Svp26促进了几种II型膜蛋白的内质网出口。我们在此证明,Mnt2和Mnt3有效纳入COPII囊泡也依赖于Svp26的功能。Mnt2和Mnt3是高尔基体定位的α-1,3-甘露糖基转移酶,具有参与蛋白质O-糖基化的II型膜拓扑结构。对酵母高尔基体亚区室的免疫分离定量显示,Mnt2和Mnt3在早期高尔基体部分比在晚期高尔基体部分更丰富。亚细胞分级分离和荧光显微镜显示,SVP26基因的缺失导致Mnt2和Mnt3在内质网中积累。使用体外COPII囊泡形成试验,我们进一步证明Svp26促进Mnt2和Mnt3纳入COPII囊泡。最后,我们表明Mnt2和Mnt3与Svp26从洋地黄皂苷溶解的膜中共免疫沉淀。这些结果表明Svp26作为Mnt2和Mnt3的内质网出口衔接蛋白发挥作用。