Neller Joachim, Dünkler Alexander, Rösler Reinhild, Johnsson Nils
Institute of Molecular Genetics and Cell Biology, Department of Biology, Ulm University, D-89081 Ulm, Germany.
Institute of Molecular Genetics and Cell Biology, Department of Biology, Ulm University, D-89081 Ulm, Germany
J Cell Biol. 2015 Jan 5;208(1):71-87. doi: 10.1083/jcb.201407126. Epub 2014 Dec 29.
The cortical endoplasmic reticulum (cER) of yeast underlies the plasma membrane (PM) at specific contact sites to enable a direct transfer of information and material between both organelles. During budding, directed movement of cER to the young bud followed by subsequent anchorage at its tip ensures the faithful inheritance of this organelle. The ER membrane protein Scs2p tethers the cER to the PM and to the bud tip through so far unknown receptors. We characterize Epo1p as a novel member of the polarisome that interacts with Scs2p exclusively at the cell tip during bud growth and show that Epo1p binds simultaneously to the Cdc42p guanosine triphosphatase-activating protein Bem3p. Deletion of EPO1 or deletion of BEM3 in a polarisome-deficient strain reduces the amount of cER at the tip. This analysis therefore identifies Epo1p as a novel and important component of the polarisome that promotes cER tethering at sites of polarized growth.
酵母的皮质内质网(cER)在特定接触位点位于质膜(PM)下方,以使两个细胞器之间能够直接进行信息和物质传递。在出芽过程中,cER向幼芽的定向移动以及随后在其顶端的锚定确保了该细胞器的忠实遗传。内质网(ER)膜蛋白Scs2p通过迄今未知的受体将cER与质膜以及芽尖相连。我们将Epo1p鉴定为极化体的一个新成员,其在芽生长过程中仅在细胞顶端与Scs2p相互作用,并表明Epo1p同时与Cdc42p鸟苷三磷酸酶激活蛋白Bem3p结合。在极化体缺陷菌株中缺失EPO1或缺失BEM3会减少顶端cER的量。因此,该分析将Epo1p鉴定为极化体的一个新的重要组成部分,其在极化生长位点促进cER的连接。