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Assessing the Innate Sensing of HIV-1 Infected CD4+ T Cells by Plasmacytoid Dendritic Cells Using an Ex vivo Co-culture System.
Published on: September 1, 2015
Human immunodeficiency virus type 1 Vpu protein induces rapid degradation of CD4
R L Willey1, F Maldarelli, M A Martin
1Laboratory of Molecular Microbiology, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland 20892.
Insights
The human immunodeficiency virus (HIV) Vpu protein accelerates the degradation of CD4, the virus receptor, by retaining it in the endoplasmic reticulum. This mechanism impacts HIV infection and CD4 stability.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- CD4 is the primary receptor for human immunodeficiency virus (HIV) entry into host cells.
- HIV infection leads to reduced surface expression of CD4 due to intracellular complex formation with viral proteins.
- The HIV-1 Vpu protein has been implicated in modulating CD4 surface levels.
Purpose of the Study:
- To investigate the effect of the HIV-1 Vpu protein on CD4 stability.
- To elucidate the mechanism by which Vpu influences CD4 degradation.
- To determine the role of endoplasmic reticulum (ER) retention in Vpu-mediated CD4 degradation.
Main Methods:
- Studied the impact of Vpu on CD4 half-life in cells.
- Utilized a CD4-binding mutant of the HIV-1 gp160 precursor polyprotein.
- Employed brefeldin A to block ER-to-Golgi transport.
Main Results:
- Vpu significantly reduces CD4 half-life from 6 hours to 12 minutes.
- Vpu-induced CD4 degradation requires CD4 retention in the ER, mediated by gp160.
- Degradation occurs even for ER-retained CD4 mutants or wild-type CD4 in the presence of brefeldin A.
Conclusions:
- HIV-1 Vpu actively promotes the rapid degradation of CD4.
- ER retention of CD4, facilitated by viral Env protein binding, is crucial for Vpu's degradation-inducing activity.
- Vpu's mechanism involves targeting CD4 for degradation within the ER, independent of cell surface expression.
Abstract:
CD4 is an integral membrane glycoprotein which is known as the human immunodeficiency virus (HIV) receptor for infection of human cells. The protein is synthesized in the endoplasmic reticulum (ER) and subsequently transported to the cell surface via the Golgi complex. HIV infection of CD4+ cells leads to downmodulation of cell surface CD4, due at least in part to the formation of stable intracellular complexes between CD4 and the HIV type 1 (HIV-1) Env precursor polyprotein gp160. This process "traps" both proteins in the ER, leading to reduced surface expression of CD4 and reduced processing of gp160 to gp120 and gp41. We have recently demonstrated that the presence of the HIV-1-encoded integral membrane protein Vpu can reduce the formation of Env-CD4 complexes, resulting in increased gp160 processing and decreased CD4 stability. We have studied the effect of Vpu on CD4 stability and found that Vpu induces rapid degradation of CD4, reducing the half-life of CD4 from 6 h to 12 min. By using a CD4-binding mutant of gp160, we were able to show that this Vpu-induced degradation of CD4 requires retention of CD4 in the ER, which is normally accomplished through its binding to gp160. The involvement of gp160 in the induction of CD4 degradation is restricted to its function as a CD4 trap, since, in the absence of Env, an ER retention mutant of CD4, as well as wild-type CD4 in cultures treated with brefeldin A, a drug that blocks transport of proteins from the ER, is degraded in the presence of Vpu.
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