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Soi3p/Rav1p在早期内体发挥作用,以调节向液泡的内吞运输以及反式高尔基体网络跨膜蛋白的定位。

Soi3p/Rav1p functions at the early endosome to regulate endocytic trafficking to the vacuole and localization of trans-Golgi network transmembrane proteins.

作者信息

Sipos György, Brickner Jason H, Brace E J, Chen Linyi, Rambourg Alain, Kepes Francois, Fuller Robert S

机构信息

Department of Biological Chemistry, University of Michigan Medical Center, Ann Arbor, Michigan 48109-0606, USA.

出版信息

Mol Biol Cell. 2004 Jul;15(7):3196-209. doi: 10.1091/mbc.e03-10-0755. Epub 2004 Apr 16.

Abstract

SOI3 was identified by a mutation, soi3-1, that suppressed a mutant trans-Golgi network (TGN) localization signal in the Kex2p cytosolic tail. SOI3, identical to RAV1, encodes a protein important for regulated assembly of vacuolar ATPase. Here, we show that Soi3/Rav1p is required for transport between the early endosome and the late endosome/prevacuolar compartment (PVC). By electron microscopy, soi3-1 mutants massively accumulated structures that resembled early endosomes. soi3Delta mutants exhibited a kinetic delay in transfer of the endocytic tracer dye FM4-64, from the 14 degrees C endocytic intermediate to the vacuole. The soi3Delta mutation delayed vacuolar degradation but not internalization of the a-factor receptor Ste3p. By density gradient fractionation, Soi3/Rav1p associated as a peripheral protein with membranes of a density characteristic of early endosomes. The soi3 null mutation markedly reduced the rate of Kex2p transport from the TGN to the PVC but had no effect on vacuolar protein sorting or cycling of Vps10p. These results suggest that assembly of vacuolar ATPase at the early endosome is required for transport of both Ste3p and Kex2p from the early endosome to the PVC and support a model in which cycling through the early endosome is part of the normal itinerary of Kex2p and other TGN-resident proteins.

摘要

SOI3是通过一个名为soi3-1的突变鉴定出来的,该突变抑制了Kex2p胞质尾部的突变型反式高尔基体网络(TGN)定位信号。SOI3与RAV1相同,编码一种对液泡ATP酶的调节组装很重要的蛋白质。在这里,我们表明Soi3/Rav1p是早期内体和晚期内体/前液泡区室(PVC)之间运输所必需的。通过电子显微镜观察,soi3-1突变体大量积累了类似于早期内体的结构。soi3Δ突变体在将内吞示踪染料FM4-64从14摄氏度的内吞中间体转移到液泡的过程中表现出动力学延迟。soi3Δ突变延迟了液泡降解,但不影响a因子受体Ste3p的内化。通过密度梯度分级分离,Soi3/Rav1p作为一种外周蛋白与具有早期内体密度特征的膜结合。soi3缺失突变显著降低了Kex2p从TGN运输到PVC的速率,但对液泡蛋白分选或Vps10p的循环没有影响。这些结果表明,早期内体上液泡ATP酶的组装是Ste3p和Kex2p从早期内体运输到PVC所必需的,并支持一种模型,即通过早期内体的循环是Kex2p和其他TGN驻留蛋白正常行程的一部分。

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