HIV-1 Tat enters T cells using coated pits before translocating from acidified endosomes and eliciting biological responses

A Vendeville, F Rayne, A Bonhoure… - Molecular biology of …, 2004 - Am Soc Cell Biol
A Vendeville, F Rayne, A Bonhoure, N Bettache, P Montcourrier, B Beaumelle
Molecular biology of the cell, 2004Am Soc Cell Biol
The HIV-1 Tat protein is secreted by infected cells. Extracellular Tat can affect bystander
uninfected T cells and induce numerous biological responses such as apoptosis and
cytokine secretion. Tat is likely involved in several immune disorders during AIDS.
Nevertheless, it is not known whether Tat triggers cell responses directly upon binding to
signaling receptors at the plasma membrane or after delivery to the cytosol. The pathway
that enables Tat to reach the cytosol is also unclear. Here we visualized Tat within T-cell …
The HIV-1 Tat protein is secreted by infected cells. Extracellular Tat can affect bystander uninfected T cells and induce numerous biological responses such as apoptosis and cytokine secretion. Tat is likely involved in several immune disorders during AIDS. Nevertheless, it is not known whether Tat triggers cell responses directly upon binding to signaling receptors at the plasma membrane or after delivery to the cytosol. The pathway that enables Tat to reach the cytosol is also unclear. Here we visualized Tat within T-cell–coated pits and endosomes. Moreover, inhibitors of clathrin/AP-2–mediated uptake such as chlorpromazine, activated RhoA, or dominant-negative mutants of Eps15, intersectin, dynamin, or rab5 impaired Tat delivery to the cytosol by preventing its endocytosis. Molecules neutralizing low endosomal pH or Hsp90 inhibitors abolished Tat entry at a later stage by blocking its endosomal translocation, as directly shown using a cell-free translocation assay. Finally, endosomal pH neutralization prevented Tat from inducing T-cell responses such as NF-κB activation, apoptosis, and interleukin secretion, indicating that cytosolic delivery is required for Tat signaling. Hence, Tat enters T cells essentially like diphtheria toxin, using clathrin-mediated endocytosis before low-pH–induced and Hsp90-assisted endosomal translocation. Cell responses are then induced from the cytosol.
Am Soc Cell Biol