Johannes Ludger, Pezo Valérie, Mallard Frédéric, Tenza Danièle, Wiltz Aimée, Saint-Pol Agnès, Helft Julie, Antony Claude, Benaroch Philippe
CNRS UMR144. Institut Curie, 26 rue d'Ulm, F-75248 Paris Cedex 05. France.
Traffic. 2003 May;4(5):323-32. doi: 10.1034/j.1600-0854.2003.00089.x.
HIV-1 Nef protein down-regulates several important immunoreceptors through interactions with components of the intracellular sorting machinery. Nef expression is also known to induce modifications of the endocytic pathway. Here, we analyzed the effects of Nef on retrograde transport, from the plasma membrane to the endoplasmic reticulum using Shiga toxin B-subunit (STxB). Nef expression inhibited access of STxB to the endoplasmic reticulum, but did not modify the surface expression level of STxB receptor, Gb3, nor its internalization rate as measured with a newly developed assay. Mutation of the myristoylation site or of a di-leucine motif of Nef involved in the interaction with the clathrin adaptor complexes AP1 and AP2 abolished the inhibition of retrograde transport. In contrast, mutations of Nef motifs known to interact with PACS-1, beta COP or a subunit of the v-ATPase did not modify the inhibitory activity of Nef on retrograde transport. Ultrastructural analysis revealed that Nef was present in clusters located on endosomal or Golgi membranes together with internalized STxB. Furthermore, in strongly Nef-expressing cells, STxB accumulated in endosomal structures that labeled with AP1. Our observations show that Nef perturbs retrograde transport between the early endosome and the endoplasmic reticulum. The potential transport steps targeted by Nef are discussed.
HIV-1 Nef蛋白通过与细胞内分选机制的成分相互作用,下调几种重要的免疫受体。已知Nef表达还会诱导内吞途径的改变。在此,我们使用志贺毒素B亚基(STxB)分析了Nef对从质膜到内质网的逆行转运的影响。Nef表达抑制了STxB进入内质网,但并未改变STxB受体Gb3的表面表达水平,也未改变用新开发的检测方法测得的其内化速率。Nef与网格蛋白衔接复合物AP1和AP2相互作用所涉及的肉豆蔻酰化位点或双亮氨酸基序的突变消除了对逆行转运的抑制。相反,已知与PACS-1、β-COP或v-ATP酶亚基相互作用的Nef基序的突变并未改变Nef对逆行转运的抑制活性。超微结构分析显示,Nef与内化的STxB一起存在于位于内体或高尔基体膜上的簇中。此外,在高表达Nef的细胞中,STxB在内体结构中积累,这些内体结构用AP1标记。我们的观察结果表明,Nef扰乱了早期内体与内质网之间的逆行转运。讨论了Nef可能靶向的转运步骤。