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A Restriction Enzyme Based Cloning Method to Assess the In vitro Replication Capacity of HIV-1 Subtype C Gag-MJ4 Chimeric Viruses
Published on: August 31, 2014
Molecular determinants of acute single-cell lysis by human immunodeficiency virus type 1
1Division of Human Retrovirology, Dana-Farber Cancer Institute, Boston, Massachusetts, USA.
Insights
Human immunodeficiency virus type 1 (HIV-1) causes cell death through syncytium formation and single-cell lysis. HIV-1 envelope glycoproteins mediate fusion, essential for lysis, suggesting intracellular interactions trigger cell membrane disruption.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Human immunodeficiency virus type 1 (HIV-1) infection leads to CD4-positive lymphocyte death.
- Syncytium formation (cell-cell fusion) is a known cytopathic effect of HIV-1.
- The mechanism of single-cell lysis by HIV-1 remains poorly understood.
Purpose of the Study:
- To investigate the molecular mechanisms underlying single-cell lysis induced by HIV-1.
- To determine the role of viral envelope glycoproteins in HIV-1-mediated single-cell death.
Main Methods:
- Expression of functional HIV-1 envelope glycoproteins in cells.
- Analysis of cell lysis, syncytium formation, and membrane fusion.
- Assessment of the role of CD4 binding and gp41 cytoplasmic tail.
Main Results:
- Expression of HIV-1 envelope glycoproteins caused lysis of single CD4-positive lymphocytes.
- Single-cell lysis involved necrosis and was independent of soluble CD4.
- Viral envelope glycoprotein-mediated membrane fusion was critical for cell lysis.
- The gp41 cytoplasmic tail was not essential for single-cell lysis.
Conclusions:
- HIV-1 envelope glycoproteins are sufficient to induce single-cell lysis.
- Membrane fusion capability of HIV-1 envelope glycoproteins is essential for cytolysis.
- Intracellular interactions between envelope glycoproteins and CD4 may initiate events leading to cell membrane disruption and lysis.
Abstract:
Human immunodeficiency virus type 1 (HIV-1) infection of CD4-positive lymphocytes is accompanied by acute cytopathic effects, i.e., syncytium formation and single-cell lysis. Syncytium formation involves cell-cell fusion mediated by viral envelope glycoproteins on the surface of infected cells and by CD4 glycoproteins on adjacent cells. The molecular basis for the lysis of single-HIV-1 infected cells is unclear. Here we report that the expression of functional envelope glycoproteins from primary and laboratory-adapted HIV-1 isolates resulted in the lysis of single CD4-positive lymphocytes. As was previously observed in HIV-1 infected cultures, single-cell lysis in this system primarily involved necrosis and was not inhibited by soluble CD4. Binding of the viral envelope glycoproteins to the CD4 glycoprotein facilitated, but was not sufficient for, cytolysis. Importantly, the ability of the HIV-1 envelope glycoproteins to mediate membrane fusion was essential for single-cell killing. By contrast, the long cytoplasmic tail of the gp41 transmembrane envelope glycoprotein was neither necessary nor sufficient for single-cell lysis. These results suggest that intracellular envelope glycoprotein-CD4 interactions initiate autofusion events that disrupt cell membrane integrity, leading to single-cell lysis by HIV-1.
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