Beronja Slobodan, Laprise Patrick, Papoulas Ophelia, Pellikka Milena, Sisson John, Tepass Ulrich
Department of Zoology, University of Toronto, Toronto, Ontario M5S 3G5, Canada.
J Cell Biol. 2005 May 23;169(4):635-46. doi: 10.1083/jcb.200410081. Epub 2005 May 16.
Polarized exocytosis plays a major role in development and cell differentiation but the mechanisms that target exocytosis to specific membrane domains in animal cells are still poorly understood. We characterized Drosophila Sec6, a component of the exocyst complex that is believed to tether secretory vesicles to specific plasma membrane sites. sec6 mutations cause cell lethality and disrupt plasma membrane growth. In developing photoreceptor cells (PRCs), Sec6 but not Sec5 or Sec8 shows accumulation at adherens junctions. In late PRCs, Sec6, Sec5, and Sec8 colocalize at the rhabdomere, the light sensing subdomain of the apical membrane. PRCs with reduced Sec6 function accumulate secretory vesicles and fail to transport proteins to the rhabdomere, but show normal localization of proteins to the apical stalk membrane and the basolateral membrane. Furthermore, we show that Rab11 forms a complex with Sec5 and that Sec5 interacts with Sec6 suggesting that the exocyst is a Rab11 effector that facilitates protein transport to the apical rhabdomere in Drosophila PRCs.
极化胞吐作用在发育和细胞分化中起主要作用,但在动物细胞中,将胞吐作用靶向特定膜结构域的机制仍知之甚少。我们对果蝇Sec6进行了表征,它是外排体复合物的一个组成部分,据信该复合物可将分泌囊泡拴系到特定的质膜位点。sec6突变会导致细胞死亡并破坏质膜生长。在发育中的光感受器细胞(PRC)中,Sec6而非Sec5或Sec8在黏着连接处积累。在晚期PRC中,Sec6、Sec5和Sec8共定位于视杆,即顶端膜的光感受亚结构域。Sec6功能降低的PRC积累分泌囊泡,无法将蛋白质转运到视杆,但蛋白质在顶端柄膜和基底外侧膜的定位正常。此外,我们发现Rab11与Sec5形成复合物,且Sec5与Sec6相互作用,这表明外排体是一种Rab11效应器,可促进果蝇PRC中蛋白质向顶端视杆的转运。