Doyotte Aurelie, Russell Matthew R G, Hopkins Colin R, Woodman Philip G
Faculty of Life Sciences, University of Manchester, Manchester, M13 9PT, UK.
J Cell Sci. 2005 Jul 15;118(Pt 14):3003-17. doi: 10.1242/jcs.02421.
The early endosome comprises morphologically distinct regions specialised in sorting cargo receptors. A central question is whether receptors move through a predetermined structural pathway, or whether cargo selection contributes to the generation of endosome morphology and membrane flux. Here, we show that depletion of tumour susceptibility gene 101 impairs the selection of epidermal growth factor receptor away from recycling receptors within the limiting membrane of the early endosome. Consequently, epidermal growth factor receptor sorting to internal vesicles of the multivesicular body and cargo recycling to the cell surface or Golgi complex are inhibited. These defects are accompanied by disruption of bulk flow transport to the lysosome and profound structural rearrangement of the early endosome. The pattern of tubular and vacuolar domains is replaced by enlarged vacuoles, many of which are folded into multicisternal structures resembling the "Class E" compartments that define several Saccharomyces cerevisiae vacuolar protein sorting mutants. The cisternae are interleaved by a fine matrix but lack other surface elaborations, most notably clathrin.
早期内体由形态上不同的区域组成,这些区域专门用于分选货物受体。一个核心问题是受体是通过预定的结构途径移动,还是货物选择有助于内体形态和膜通量的产生。在这里,我们表明肿瘤易感基因101的缺失会损害早期内体限制膜内表皮生长因子受体与循环受体的分选。因此,表皮生长因子受体向内体多囊泡体内部囊泡的分选以及货物向细胞表面或高尔基体复合体的循环被抑制。这些缺陷伴随着向溶酶体的大量运输中断以及早期内体的深刻结构重排。管状和液泡状结构域的模式被扩大的液泡所取代,其中许多液泡折叠成多池状结构,类似于定义几种酿酒酵母液泡蛋白分选突变体的“E类”区室。这些池被精细的基质交错,但缺乏其他表面修饰,最显著的是网格蛋白。