HIV enters cells via endocytosis and dynamin-dependent fusion with endosomes.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 19410541.
- Also identified by DOI 10.1016/j.cell.2009.02.046 and PMC identifier 2696170.
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Abstract
Enveloped viruses that rely on a low pH-dependent step for entry initiate infection by fusing with acidic endosomes, whereas the entry sites for pH-independent viruses, such as HIV-1, have not been defined. These viruses have long been assumed to fuse directly with the plasma membrane. Here we used population-based measurements of the viral content delivery into the cytosol and time-resolved imaging of single viruses to demonstrate that complete HIV-1 fusion occurred in endosomes. In contrast, viral fusion with the plasma membrane did not progress beyond the lipid mixing step. HIV-1 underwent receptor-mediated internalization long before endosomal fusion, thus minimizing the surface exposure of conserved viral epitopes during fusion and reducing the efficacy of inhibitors targeting these epitopes. We also show that, strikingly, endosomal fusion is sensitive to a dynamin inhibitor, dynasore. These findings imply that HIV-1 infects cells via endocytosis and envelope glycoprotein- and dynamin-dependent fusion with intracellular compartments.
Medical subject headings
- Dynamins
- Endocytosis
- HIV Infections
- HIV-1
- Virus Internalization