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Published on: January 22, 2019
Daxx Inhibits HIV-1 Reverse Transcription and Uncoating in a SUMO-Dependent Manner
Sarah Maillet1, Juliette Fernandez1, Mathilde Decourcelle2
1Institut de Recherche en Infectiologie de Montpellier (IRIM), Université de Montpellier, CNRS, 34090 Montpellier, France.
Abstract:
Death domain-associated protein 6 (Daxx) is a multifunctional, ubiquitously expressed and highly conserved chaperone protein involved in numerous cellular processes, including apoptosis, transcriptional repression, and carcinogenesis. In 2015, we identified Daxx as an antiretroviral factor that interfered with HIV-1 replication by inhibiting the reverse transcription step. In the present study, we sought to unravel the molecular mechanism of Daxx-mediated restriction and, in particular, to identify the protein(s) that Daxx targets in order to achieve its antiviral activity. First, we show that the SUMO-interacting motif (SIM) located at the C-terminus of the protein is strictly required for Daxx to inhibit HIV-1 reverse transcription. By performing a quantitative proteomic screen combined with classical biochemical analyses, we found that Daxx associated with incoming HIV-1 cores through a SIM-dependent interaction with cyclophilin A (CypA) and capsid (CA). Daxx was found to reside within a multiprotein complex associated with viral capsids, also containing TNPO3, TRIM5α, and TRIM34. Given the well-known influence of these cellular factors on the stability of HIV-1 cores, we investigated the effect of Daxx on the cytoplasmic fate of incoming cores and found that Daxx prevented HIV-1 uncoating in a SIM-dependent manner. Altogether, our findings suggest that, by recruiting TNPO3, TRIM5α, and TRIM34 and possibly other proteins onto incoming HIV-1 cores through a SIM-dependent interaction with CA-bound CypA, Daxx increases their stability, thus preventing uncoating and reverse transcription. Our study uncovers a previously unknown function of Daxx in the early steps of HIV-1 infection and further illustrates how reverse transcription and uncoating are two tightly interdependent processes.
Insights
Death domain-associated protein 6 (Daxx) prevents HIV-1 replication by stabilizing viral cores, inhibiting uncoating and reverse transcription through SUMO-interacting motif-dependent interactions.
Area of Science:
- Virology
- Molecular Biology
- Cellular Biology
Background:
- Death domain-associated protein 6 (Daxx) is a conserved protein involved in apoptosis and transcriptional repression.
- Previous research identified Daxx as an antiretroviral factor inhibiting HIV-1 reverse transcription.
Purpose of the Study:
- To elucidate the molecular mechanism of Daxx-mediated HIV-1 restriction.
- To identify specific protein targets of Daxx during HIV-1 replication.
Main Methods:
- Quantitative proteomic screening
- Biochemical analyses
- SUMO-interacting motif (SIM) analysis
Main Results:
- Daxx's SUMO-interacting motif (SIM) is essential for inhibiting HIV-1 reverse transcription.
- Daxx interacts with HIV-1 capsid (CA) and cyclophilin A (CypA) in a SIM-dependent manner.
- Daxx stabilizes incoming HIV-1 cores by preventing uncoating, involving TNPO3, TRIM5α, and TRIM34.
Conclusions:
- Daxx functions as an antiretroviral factor by preventing HIV-1 uncoating and subsequent reverse transcription.
- Daxx's mechanism involves recruiting cellular proteins to stabilize viral cores via SIM-dependent interactions.
- This study reveals a novel role for Daxx in early HIV-1 infection stages, highlighting the interdependence of uncoating and reverse transcription.
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