Macrophages are sentinel cells that play a pivotal role in a broad range of innate and adaptive immune responses. Macrophages can be infected by HIV-1 and because these are long-lived cells and are resistant to the cytopathic effects of virus infection, contribute significantly to the virus reservoir throughout the course of the disease. Macrophages are present ubiquitously in all tissues and can disseminate virus to CD4+ T cells across cell-to-cell junctions with high efficiency. In this proposal, we will test the hypothesis tat establishment of productive infection in macrophages by HIV-1 and de novo viral protein expression triggers type I IFN-dependent pro-inflammatory responses. Using a proviral mutagenesis and expression strategy, we will identify the viral determinants that are necessary for inducing innate responses. We will utilize immuno-affinity purification and mass spectrometry approaches to identify the host factor(s) that detects these pathogen determinants and the signaling cascades that are triggered upon engagement of the viral determinants by this yet to be identified host factor. Finally, we will determine if induction of innate responses enhances expression of interferon-stimulated genes, such as CD169, that are subverted by HIV-1 to facilitate virus spread to CD4+ T cells across infectious synapses, a macrophage-dependent mechanism of systemic virus dissemination.

Public Health Relevance

Although HIV-1 replication in vivo can be suppressed to very low or undetectable levels in infected individuals by HAART, chronic inflammation persists and has significant negative consequences for the health of the infected individual. Hence, defining the mechanisms for persistent inflammation in the context of HAART is a key question that remains unanswered. In this proposal, we will identify the molecular mechanisms by which productive HIV-1 infection induces immune activation in macrophages.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI064099-12
Application #
9179586
Study Section
AIDS Molecular and Cellular Biology Study Section (AMCB)
Program Officer
Kuo, Lillian S
Project Start
2005-06-01
Project End
2020-11-30
Budget Start
2016-12-01
Budget End
2017-11-30
Support Year
12
Fiscal Year
2017
Total Cost
Indirect Cost
Name
Boston University
Department
Microbiology/Immun/Virology
Type
Schools of Medicine
DUNS #
604483045
City
Boston
State
MA
Country
United States
Zip Code
02118
Pena-Cruz, Victor; Agosto, Luis M; Akiyama, Hisashi et al. (2018) HIV-1 replicates and persists in vaginal epithelial dendritic cells. J Clin Invest 128:3439-3444
Akiyama, Hisashi; Miller, Caitlin M; Ettinger, Chelsea R et al. (2018) HIV-1 intron-containing RNA expression induces innate immune activation and T cell dysfunction. Nat Commun 9:3450
Xu, Fangda; Bandara, Asanga; Akiyama, Hisashi et al. (2018) Membrane-wrapped nanoparticles probe divergent roles of GM3 and phosphatidylserine in lipid-mediated viral entry pathways. Proc Natl Acad Sci U S A 115:E9041-E9050
Ruedas, John B; Ladner, Jason T; Ettinger, Chelsea R et al. (2017) Spontaneous Mutation at Amino Acid 544 of the Ebola Virus Glycoprotein Potentiates Virus Entry and Selection in Tissue Culture. J Virol 91:
Nazari, Mina; Xi, Min; Lerch, Sarah et al. (2017) Plasmonic Enhancement of Selective Photonic Virus Inactivation. Sci Rep 7:11951
Miller, Caitlin M; Akiyama, Hisashi; Agosto, Luis M et al. (2017) Virion-Associated Vpr Alleviates a Postintegration Block to HIV-1 Infection of Dendritic Cells. J Virol 91:
Feizpour, Amin; Stelter, David; Wong, Crystal et al. (2017) Membrane Fluidity Sensing on the Single Virus Particle Level with Plasmonic Nanoparticle Transducers. ACS Sens 2:1415-1423
Kozlowski, Elyse; Wasserman, Gregory A; Morgan, Marcos et al. (2017) The RNA uridyltransferase Zcchc6 is expressed in macrophages and impacts innate immune responses. PLoS One 12:e0179797
Akiyama, Hisashi; Ramirez, Nora-Guadalupe Pina; Gibson, Gregory et al. (2017) Interferon-Inducible CD169/Siglec1 Attenuates Anti-HIV-1 Effects of Alpha Interferon. J Virol 91:
Ahi, Yadvinder S; Zhang, Shu; Thappeta, Yashna et al. (2016) Functional Interplay Between Murine Leukemia Virus Glycogag, Serinc5, and Surface Glycoprotein Governs Virus Entry, with Opposite Effects on Gammaretroviral and Ebolavirus Glycoproteins. MBio 7:

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