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Nuclear export of Vpr is required for efficient replication of human immunodeficiency virus type 1 in tissue
Michael P Sherman1, Carlos M C de Noronha, Lauren A Eckstein
1Gladstone Institute of Virology and Immunology, San Francisco, California 94141, USA.
Abstract:
Retroviruses must gain access to the host cell nucleus for subsequent replication and viral propagation. Human immunodeficiency virus type 1 (HIV-1) and other primate lentiviruses are distinguished from the gammaretroviruses by their ability to infect nondividing cells such as macrophages, an important viral reservoir in vivo. Rather than requiring nuclear membrane breakdown during cell division, the HIV-1 preintegration complex (PIC) enters the nucleus by traversing the central aqueous channel of the limiting nuclear pore complex. The HIV-1 PIC contains three nucleophilic proteins, matrix, integrase, and Vpr, all of which have been implicated in nuclear targeting. The mechanism by which Vpr can display such nucleophilic properties and yet also be available for incorporation into virions assembling at the plasma membrane is unresolved. We recently characterized Vpr as a nucleocytoplasmic shuttling protein that contains two novel nuclear import signals and an exportin-1-dependent nuclear export signal (NES). We now demonstrate that mutation of this NES impairs the incorporation of Vpr into newly formed virions. Furthermore, we find that the Vpr NES is required for efficient HIV replication in tissue macrophages present in human spleens and tonsils. These findings underscore how the nucleocytoplasmic shuttling of Vpr not only contributes to nuclear import of the HIV-1 PIC but also enables Vpr to be present in the cytoplasm for incorporation into virions, leading to enhancement of viral spread within nondividing tissue macrophages.
Insights
The Vpr protein
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Retroviruses, including Human Immunodeficiency Virus type 1 (HIV-1), require nuclear entry for replication.
- HIV-1 infects non-dividing cells like macrophages, a key viral reservoir, by entering the nucleus via nuclear pore complexes.
- The Vpr protein is crucial for HIV-1 nuclear targeting but its dual role in nuclear import and virion incorporation is unclear.
Purpose of the Study:
- To investigate the role of the Vpr protein's nucleocytoplasmic shuttling in HIV-1 replication.
- To determine how Vpr's nuclear export signal (NES) influences its incorporation into virions and viral spread.
Main Methods:
- Characterization of Vpr as a nucleocytoplasmic shuttling protein with identified import and export signals.
- Mutation of the Vpr NES to assess its impact on Vpr incorporation into virions.
- Assessment of HIV-1 replication in human tissue macrophages with mutated Vpr.
Main Results:
- Mutation of the Vpr NES significantly impairs Vpr incorporation into newly formed HIV-1 virions.
- The Vpr NES is essential for efficient HIV-1 replication in tissue macrophages.
- Vpr's nucleocytoplasmic shuttling facilitates both nuclear import of the preintegration complex and cytoplasmic presence for virion assembly.
Conclusions:
- Vpr's nucleocytoplasmic shuttling is critical for HIV-1 replication in macrophages.
- The Vpr NES plays a dual role, enabling nuclear import and subsequent incorporation into virions.
- Understanding Vpr shuttling enhances knowledge of HIV-1 propagation in key cellular reservoirs.